%!PS-Adobe-3.0 EPSF-3.0 www.ps.bam.de/XE33/10L/L33E00XX.PS 20061001 %%BoundingBox: 00 00 414 292 /pdfmark where {pop} {userdict /pdfmark /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put } if [ /Title (PostScript pictures: www.ps.bam.de/XE33/XE33.HTM) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: www.ps.bam.de or http://o2.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.Richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark [ /View [ /Fit ] /DOCVIEW pdfmark %BEG XE33/10L/L33N00ZED NO Output Linearization LAB* -> cmyolvnw* 20030101 %BEG OUTLIN10.PS /MTLoutaS0g 21 array def /MTLoutaS0g [18.01 23.17 28.33 33.49 38.65 43.81 48.97 54.13 59.29 64.45 69.61 74.77 79.93 85.09 90.25 95.41 18.01 37.36 56.71 76.06 95.41] def %FILE PREPARED FOR MIXED MODE, e. g. input ORS and output TLS /IMES 0 def %0=LAB* used, no reflection factor necessary %/IMES 1 def /Yre 2.52 def %1=XYZ measurement and standard device reflection %/i*ptrsc 0 def %LAB* setcolor to cmy0* / 000n* setcmykcolor /i*ptrsc 1 def %LAB* setcolor to olv* setrgbcolor / w* setgray %/i*ptrsc 2 def %LAB* setcolor to cmy0* / nnn0* setcmykcolor %/i*ptrsc 3 def %LAB* setcolor to olv* / www* setrgbcolor %/i*ptrsc 4 def %LAB* setcolor to lab* setcolor %/i*ptrsc 5 def %LAB* setcolor to LAB* setcolor %/i*ptrsc 6 def %LAB* setcolor to 000n* setcmykcolor %/i*ptrsc 7 def %LAB* setcolor to w* setgray /ISYSLAB 0 def %default input for Offset Reflective System (ORS18) /ISYSTEM 0 def %default output for Offset Reflective System (ORS18) %/ISYSLAB 1 def %input for Television Luminous System (TLS00) %/ISYSTEM 1 def %output for Television Luminous System (TLS00) %/ISYSLAB 2 def %input for Device Reflective measurement system (DRSXX) %/ISYSTEM 2 def %output for Device Reflective measurement system (DRSXX) %/ISYSLAB 3 def %input for Television Luminous Reflection System (TLS18) %/ISYSTEM 3 def %output for Television Luminous Reflection System (TLS18) %/ISYSLAB 4 def %input for Device Luminous measurement system (DLSXX) %/ISYSTEM 4 def %output for Device Luminous measurement system (DLSXX) /iLAB 0 def % for preparing input-output system data only once %END XE33/10L/EARLY BINDING %END XE33/10L/L33N00ZED NO Output Linearisation (OL) LAB* -> cmyolvnw* 20030101 %BEG XE33/10L/OUTLIN1XNA.PS MXYZ_to_LAB* 20030101 %BEG XE33/10L/EARLY BINDING AND SYSTEM (ONLY USED IN CASE OF OL) /sggray {setgray} bind def /sgrgbcolor {setrgbcolor} bind def /sgcmykcolor {setcmykcolor} bind def /sgtransfer {settransfer} bind def /sgcolortransfer {setcolortransfer} bind def /sgcolor {setcolor} bind def %END XE33/10L/EARLY BINDING AND SYSTEM (ONLY USED IN CASE OF OL) %INTENDED, START and LINEARIZED OUTPUT OF 16 STEP GREY (GLOBAL TO BE CHANGED) /MTLoutaS0g 21 array def /MTLoutaS1g 16 array def /MTLoutaS2g 16 array def %absolute lightness L* output %theoretical standard absolute linear L* output: no change of output %do not change the following two lines of output data /MTLoutaS0g [18.01 23.17 28.33 33.49 38.65 43.81 48.97 54.13 59.29 64.45 69.61 74.77 79.93 85.09 90.25 95.41 18.01 37.36 56.71 76.06 95.41] def %theoretical absolute square root (Exp. 0.5) L* output %/MTLoutaS1g [18.0 38.0 46.3 52.6 58.0 62.7 67.0 70.9 % 74.5 78.0 81.2 83.4 87.2 90.1 92.8 95.4] def %change the following two lines for the 16 start grey CIELAB L* output data /MTLoutaS1g [18.01 23.17 28.33 33.49 38.65 43.81 48.97 54.13 59.29 64.45 69.61 74.77 79.93 85.09 90.25 95.41] def %theoretical absolute half square (Exp. 1.5) L* output %/MTLoutaS2g [18.0 19.3 21.8 24.9 28.7 32.9 37.6 42.7 % 48.1 54.0 60.1 66.6 74.3 80.4 87.8 95.4] def %change the following two lines for the 16 linearized grey CIELAB L* output data /MTLoutaS2g [18.01 23.17 28.33 33.49 38.65 43.81 48.97 54.13 59.29 64.45 69.61 74.77 79.93 85.09 90.25 95.41] def %BEG Procedure special input XYZ to be transferred to LAB* /MXYZ_to_LAB* {%BEG MXYZ_to_LAB* /XD65 95.05 def /YD65 100.00 def /ZD65 108.90 def /Xwref XD65 0.8859 mul def %wref=white reference /Ywref YD65 0.8859 mul def /Zwref ZD65 0.8859 mul def /Xnref XD65 Yre 100 div mul def %nref=black reference /Ynref YD65 Yre 100 div mul def /Znref ZD65 Yre 100 div mul def 0 16 240 {/j exch def %j=0,112,16 %Asumption END point "white" /i10 j 4 mul 1 add def /i20 i10 15 4 mul add def 0 1 15 {/i exch def %i=0,15 /i2i1 i10 i 4 mul add def /i2i2 i2i1 1 add def /i2i3 i2i1 2 add def /XQ MISO_S1gXYZ i2i1 get MISO_S1gXYZ i20 0 add get div Xwref mul Xnref add XD65 div def /YQ MISO_S1gXYZ i2i2 get MISO_S1gXYZ i20 1 add get div Ywref mul Ynref add YD65 div def /ZQ MISO_S1gXYZ i2i3 get MISO_S1gXYZ i20 2 add get div Zwref mul Znref add ZD65 div def XQ 0 lt {/XQ 0.00000001 def} if YQ 0 lt {/YQ 0.00000001 def} if ZQ 0 lt {/ZQ 0.00000001 def} if MISO_S1g i2i1 YQ 0.008856 lt {903.3 YQ mul} {YQ 0.33333333 exp 116 mul 16 sub} ifelse put MISO_S1g i2i2 XQ 0.008856 lt {7.787 XQ mul 16 116 div add} {XQ 0.33333333 exp} ifelse YQ 0.008856 lt {7.787 YQ mul 16 116 div add} {YQ 0.33333333 exp} ifelse sub 500 mul put MISO_S1g i2i3 YQ 0.008856 lt {7.787 YQ mul 16 116 div add} {YQ 0.33333333 exp} ifelse ZQ 0.008856 lt {7.787 ZQ mul 16 116 div add} {ZQ 0.33333333 exp} ifelse sub 200 mul put } for %i=0,15 } for %j=0,240,16 } bind def %END Procedure MXYZ_to_LAB* %END XE33/10L/OUTLIN1XNA.PS MXYZ_to_LAB* 20030101 /CFilenameS1g %START output of step S1g (www.ps.bam.de/XE33/10L/L33E00N) def %Link file name for data /CDateS1g (2004-05-01, Name) def %Date of calculation, Tester /CDeviceS1g (unknown ) def %Device name /CMeasS1g (XE33/10L/L33E00N) def %File name measured in step S1g %change scount2g from 2 to 10 for 10 series %change pcount2g from 8 to 240 for 240 pages of each series /scount1g 1 def /scount2g 1 def /scountg 1 def /pcount1g 1 def /pcount2g 1 def /pcountg 1 def /xchart1g 0 def /xchart2g 1 def /xchartg 0 def /BeginEPSF { % def % Prepare for EPS file /b4_Inc_state save def % Save state for cleanup /dict_count countdictstack def /op_count count 1 sub def % Count objects on op stack userdict begin % Make userdict current dict /showpage {} def 0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin 10 setmiterlimit [] 0 setdash newpath /languagelevel where % If level not equal to 1 then {pop languagelevel where % If level not equal to 1 then 1 ne {false setstrokeadjust false setoverprint } if } if } bind def /EndEPSF { % def count op_count sub {pop} repeat countdictstack dict_count sub {end} repeat % Clean up dict stack b4_Inc_state restore } bind def /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /languagelevel where {pop languagelevel} {1} ifelse /PSL12 exch def /dictende {counttomark 2 idiv dup dict begin {def} repeat pop currentdict end} bind def % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /TK {250 /Times-ISOL1 FS} bind def /TM {300 /Times-ISOL1 FS} bind def /TG {350 /Times-ISOL1 FS} bind def /TIK {250 /TimesI-ISOL1 FS} bind def /TIM {300 /TimesI-ISOL1 FS} bind def /TIG {350 /TimesI-ISOL1 FS} bind def /TBK {250 /TimesB-ISOL1 FS} bind def /TBM {300 /TimesB-ISOL1 FS} bind def /TBG {350 /TimesB-ISOL1 FS} bind def /TBIK {250 /TimesBI-ISOL1 FS} bind def /TBIM {300 /TimesBI-ISOL1 FS} bind def /TBIG {350 /TimesBI-ISOL1 FS} bind def %ANFA CMYKDEF %CMYKDEA0 (A0=Standard-Drucker-CMYKDEF) 15.3.97 /tzac [1.000 0.933 0.867 0.800 0.733 0.667 0.600 0.533 0.467 0.400 0.333 0.267 0.200 0.132 0.067 0.000 1.000 0.750 0.500 0.250 0.000] def /tzam [1.000 0.933 0.867 0.800 0.733 0.667 0.600 0.533 0.467 0.400 0.333 0.267 0.200 0.132 0.067 0.000 1.000 0.750 0.500 0.250 0.000] def /tzay [1.000 0.933 0.867 0.800 0.733 0.667 0.600 0.533 0.467 0.400 0.333 0.267 0.200 0.132 0.067 0.000 1.000 0.750 0.500 0.250 0.000] def /tzan [1.000 0.933 0.867 0.800 0.733 0.667 0.600 0.533 0.467 0.400 0.333 0.267 0.200 0.132 0.067 0.000 1.000 0.750 0.500 0.250 0.000] def /tza0 [0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000] def /tza1 [1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000] def %ENDE CMYKD /rec %x, y width heigth {/heigth exch def /width exch def moveto width 0 rlineto 0 heigth rlineto width neg 0 rlineto closepath } bind def /colrecfiLAB* %x y width heigth LAB* { setcolor rec fill} bind def /colrecstLAB* %x y width heigth LAB* { setcolor rec stroke} bind def /colrecficmyn* %x y width heigth cmy0* or 000n* { setcmykcolor rec fill} bind def /colrecstcmyn* %x y width heigth cmy0* or 000n* { setcmykcolor rec stroke} bind def /colrecfiw* %x y width heigth w* { setgray rec fill} bind def /colrecstw* %x y width heigth w* { setgray rec stroke} bind def /colrecfiolv* %x y width heigth olv* { setrgbcolor rec fill} bind def /colrecstolv* %x y width heigth olv* { setrgbcolor rec stroke} bind def /tzocmy0* {0.0 1.0 1.0 0.0} bind def %Reproduction colours /tzlcmy0* {1.0 0.0 1.0 0.0} bind def %cmyn* setcmykcolor /tzvcmy0* {1.0 1.0 0.0 0.0} bind def /tzccmy0* {1.0 0.0 0.0 0.0} bind def /tzmcmy0* {0.0 1.0 0.0 0.0} bind def /tzycmy0* {0.0 0.0 1.0 0.0} bind def /tzoolv* {1.0 0.0 0.0} bind def %Reproduction colours /tzlolv* {0.0 1.0 0.0} bind def %olv* setrgbcolor /tzvolv* {0.0 0.0 1.0} bind def /tzcolv* {0.0 1.0 1.0} bind def /tzmolv* {1.0 0.0 1.0} bind def /tzyolv* {1.0 1.0 0.0} bind def /tzoLAB* [53.34 72.46 50.66] def %Reproduction colours /tzlLAB* [84.93 -79.83 74.80] def %LAB* setcolor /tzvLAB* [32.20 24.88 -37.89] def /tzcLAB* [88.10 -44.88 -13.36] def /tzmLAB* [59.66 90.32 -19.65] def /tzyLAB* [93.76 -20.24 85.93] def /tzncmy0* {1.00 1.00 1.00 0.00} bind def %grey series /tzdcmy0* {0.75 0.75 0.75 0.00} bind def %cmy0* setcmykcolor /tzzcmy0* {0.50 0.50 0.50 0.00} bind def /tzhcmy0* {0.25 0.25 0.25 0.00} bind def /tzwcmy0* {0.00 0.00 0.00 0.00} bind def /tzn000n* {0.00 0.00 0.00 1.00} bind def %grey series 000n* /tzd000n* {0.00 0.00 0.00 0.75} bind def %000n* setcmykcolor /tzz000n* {0.00 0.00 0.00 0.50} bind def /tzh000n* {0.00 0.00 0.00 0.25} bind def /tzw000n* {0.00 0.00 0.00 0.00} bind def /tznw* {0.00} bind def %grey series /tzdw* {0.25} bind def %w* setgray /tzzw* {0.50} bind def /tzhw* {0.75} bind def /tzww* {1.00} bind def /tznolv* {0.00 0.00 0.00} bind def %grey series /tzdolv* {0.25 0.25 0.25} bind def %olv* setrgbcolor /tzzolv* {0.50 0.50 0.50} bind def /tzholv* {0.75 0.75 0.75} bind def /tzwolv* {1.00 1.00 1.00} bind def /tznLAB* [18.01 0.00 0.00] def %grey series /tzdLAB* [37.36 0.00 0.00] def %LAB* setcolor /tzzLAB* [56.71 0.00 0.00] def /tzhLAB* [76.06 0.00 0.00] def /tzwLAB* [95.41 0.00 0.00] def /tfn {0 setgray} bind def /tfw {1 setgray} bind def /A4quer {598 0 translate 90 rotate} def %0 %1 /cvishow {cvi 6 string cvs show} def /cvsshow1 {10 mul cvi 0.1 mul 7 string cvs show} def /cvsshow2 {100 mul cvi 0.01 mul 7 string cvs show} def /cvsshow3 {1000 mul cvi 0.001 mul 7 string cvs show} def /tzank [1.000 0.933 0.867 0.800 0.733 0.667 0.600 0.533 0.467 0.400 0.333 0.267 0.200 0.132 0.067 0.000 1.000 0.750 0.500 0.250 0.000] def %picturetransfer from standard locations (8 pictures, 5 test charts) /xpic5458 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 %x for chartg=0 0.0 0.0 0.0 -12 0.0 0.0 0.0 0.0 %x for chartg=1 0.0 0.0 0.0 -25 0.0 0.0 0.0 0.0 %x for chartg=2 0.0 0.0 0.0 -12 0.0 0.0 0.0 0.0 %x for chartg=3 0.0 0.0 0.0 -20 0.0 0.0 0.0 0.0] def %x for chartg=4 /ypic5458 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 %y for chartg=0 0.0 0.0 0.0 -05 0.0 0.0 0.0 0.0 %y for chartg=1 0.0 0.0 0.0 -12 0.0 0.0 0.0 0.0 %y for chartg=2 0.0 0.0 0.0 -05 0.0 0.0 0.0 0.0 %y for chartg=3 0.0 0.0 0.0 -20 0.0 0.0 0.0 0.0] def %y for chartg=4 %BEG 61 lines comment or new PS operators possible %02 %03 %04 %05 %06 %07 %08 %09 %11 %END 38 lines comment or new PS operators possible %%EndProlog %%BeginPageSetup /#copies 1 def %A4quer 0.5 0.5 scale /pgsave save def %%EndPageSetup 0.0 MM 0.0 MM translate %Verschiebung nach oben und links fuer Belichter gsave /SS$ [(G) (E) (S) (F) (I) (J) (M)] def /SC$ [(N) (F) (S) (D) (T) (E) (C)] def /SX$ [(0) (1) (2) (3) (4) (5) (6) (7) (8) (9) (A) (B) (C) (D) (E) (F)] def /SY$ [(0) (1) (2) (3) (4) (5) (6) (7) (8) (9) (A) (B) (C) (D) (E) (F)] def % 0 1 2 3 4 5 % 6 7 8 /EX$ [(1.PS/.TXT) (B.PS/.BMP) (G.PS/.GIF) (H.PS/.HTM) (I.PS/.HTM) (J.PS/.JPE) (P.PS/.PDF) (T.PS/.TIF)] def /EY$ [(1.DAT) (B.DAT) (G.DAT) (H.DAT) (I.DAT) (J.DAT) (P.DAT) (T.DAT)] def /lanindg1 1 def /lanindg2 1 def /colormg1 0 def /colormg2 0 def /xcolorg1 0 def /xcolorg2 0 def /xchartg1 0 def /xchartg2 0 def /lanindg lanindg1 def %no loops /colormg colormg1 def /xcolorg xcolorg1 def /xchartg xchartg1 def /pcount2x pcount2g xchart2g sub 2 add def 1 1 1 {/scountg exch def %s=serie, e. g. 1,1,10 1 1 1 {/pcountg exch def %p=page, e. g. 1,1,250 pcountg pcount1g eq {/xchart10 0 def /xchart20 0 def} {/xchart10 1 def /xchart20 1 def} ifelse %%pcountg pcount2x eq {/xchart10 0 def /xchart20 0 def} if 0 1 0 {/xchartg exch def 2 MM /Times-Roman FS 274 MM 82 MM moveto -90 rotate (/XE33/ ) show (Form: ) show xchartg 1 add cvi 6 string cvs show (/) show xchart2g 1 add cvi 6 string cvs show (,) show 90 rotate 274 MM 65 MM moveto -90 rotate (Serie: ) show scountg cvi 6 string cvs show (/) show scount2g cvi 6 string cvs show (,) show 90 rotate 274 MM 55 MM moveto -90 rotate lanindg 0 eq {(Seite: )}{(Page: )} ifelse show pcountg xchartg xchart10 sub add cvi 6 string cvs show 90 rotate 274 MM 45 MM moveto -90 rotate lanindg 0 eq {(Seitenz\344hlung )}{(Page: count: )} ifelse show scountg 1 sub pcount2g mul pcountg add pcountg pcount2x eq {xchartg add pcount1g pcount2x ne {2 sub } if} if cvi 6 string cvs show 90 rotate /GSS$ SS$ lanindg get def /GSC$ SC$ colormg get def /GSX$ SX$ xcolorg get def /GSY$ SY$ xchartg get def /GEX$ EX$ 0 get def /GEY$ EY$ 0 get def /xcha801 xchartg 8 mul 0 add def /xcha803 xchartg 8 mul 1 add def /xcha805 xchartg 8 mul 2 add def /xcha807 xchartg 8 mul 3 add def /xcha811 xchartg 8 mul 4 add def /xcha813 xchartg 8 mul 5 add def /xcha815 xchartg 8 mul 6 add def /xcha817 xchartg 8 mul 7 add def %gsave BeginEPSF 28 MM 197 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto 1 1 scale -77 -91 translate %%BeginDocument: Bild 10 %line 329 %%EndDocument EndEPSF grestore gsave BeginEPSF 28 MM 152 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto 1 1 scale -77 -91 translate %%BeginDocument: Bild 11 %line 339 %!PS-Adobe-3.0 EPSF-3.0 XE330-1 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 0 def} {/xchart 0 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-1 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 86 MM 152 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 12 %line 349 %!PS-Adobe-3.0 EPSF-3.0 XE330-2 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 1 def} {/xchart 1 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-2 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 28 MM 108 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 13 %line 359 %!PS-Adobe-3.0 EPSF-3.0 XE330-3 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 2 def} {/xchart 2 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-3 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 86 MM 108 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 14 %line 369 %!PS-Adobe-3.0 EPSF-3.0 XE330-4 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 3 def} {/xchart 3 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-4 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 28 MM 064 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 15 %line 379 %!PS-Adobe-3.0 EPSF-3.0 XE330-5 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 4 def} {/xchart 4 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-5 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 86 MM 064 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 16 %line 389 %!PS-Adobe-3.0 EPSF-3.0 XE330-6 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 5 def} {/xchart 5 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-6 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 28 MM 020 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 17 %line 399 %!PS-Adobe-3.0 EPSF-3.0 XE330-7 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 6 def} {/xchart 6 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-7 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 86 MM 020 MM translate 12 /Times-ISOL1 FS -9 MM -7 MM moveto ( ) show 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 18 %line 409 %!PS-Adobe-3.0 EPSF-3.0 XE330-8 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 7 def} {/xchart 7 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE330-8 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 161 MM 197 MM translate 10 /Times-ISOL1 FS 1 1 scale -77 -91 translate %%BeginDocument: Bild 12 %line 419 %%EndDocument EndEPSF grestore gsave BeginEPSF 161 MM 152 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 21 %line 429 %!PS-Adobe-3.0 EPSF-3.0 XE331-1 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 8 def} {/xchart 8 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-1 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 219 MM 152 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 22 %line 439 %!PS-Adobe-3.0 EPSF-3.0 XE331-2 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 9 def} {/xchart 9 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-2 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 161 MM 108 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 23 %line 449 %!PS-Adobe-3.0 EPSF-3.0 XE331-3 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 10 def} {/xchart 10 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-3 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 219 MM 108 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 24 %line 459 %!PS-Adobe-3.0 EPSF-3.0 XE331-4 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 11 def} {/xchart 11 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-4 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 161 MM 064 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 25 %line 469 %!PS-Adobe-3.0 EPSF-3.0 XE331-5 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 12 def} {/xchart 12 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-5 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 219 MM 064 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 26 %line 479 %!PS-Adobe-3.0 EPSF-3.0 XE331-6 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 13 def} {/xchart 13 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-6 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 161 MM 020 MM translate 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 27 %line 489 %!PS-Adobe-3.0 EPSF-3.0 XE331-7 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 14 def} {/xchart 14 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-7 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 219 MM 020 MM translate 12 /Times-ISOL1 FS -9 MM -7 MM moveto ( ) show 10 /Times-ISOL1 FS 53 MM 1 MM moveto ( ) show 1 1 scale -77 -91 translate %%BeginDocument: Bild 28 %line 499 %!PS-Adobe-3.0 EPSF-3.0 XE331-8 %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark2 where {pop} {userdict /pdfmark2 /cleartomark load put} ifelse /languagelevel where {pop languagelevel} {1} ifelse 2 lt { userdict (<<) cvn ([) cvn load put userdict (>>) cvn (]) cvn load put} if [ /Title (PostScript pictures: Image Technology) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://o2.ps.bam.de or http://www.ps.bam.de) /Keywords (image reproduction, colour devices) /Creator (klaus.richter@bam.de) /CreationDate (D:2006100112000) /ModDate (D:2006100112000) /DOCINFO pdfmark2 [ /View [ /FitB ] /DOCVIEW pdfmark2 %END PDFDE011 % !AUSTAUSCH Times-Roman -> Times-Roman-ISOLatin1=Times-I /Times-Roman findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /Times-ISOL1 exch definefont pop /Times-Italic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesI-ISOL1 exch definefont pop /Times-Bold findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesB-ISOL1 exch definefont pop /Times-BoldItalic findfont dup length dict begin {1 index /FID ne {def} {pop pop} ifelse }forall /Encoding ISOLatin1Encoding def currentdict end /TimesBI-ISOL1 exch definefont pop /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def /str {8 string } bind def /TK {200 /Times-ISOL1 FS} bind def /TM {250 /Times-ISOL1 FS} bind def /TG {300 /Times-ISOL1 FS} bind def /TKi {160 /Times-ISOL1 FS} bind def /TIK {200 /TimesI-ISOL1 FS} bind def /TIM {250 /TimesI-ISOL1 FS} bind def /TIG {300 /TimesI-ISOL1 FS} bind def /TBK {200 /TimesB-ISOL1 FS} bind def /TBM {250 /TimesB-ISOL1 FS} bind def /TBG {300 /TimesB-ISOL1 FS} bind def /TBKe {160 /TimesB-ISOL1 FS} bind def /TBIK {200 /TimesBI-ISOL1 FS} bind def /TBIM {250 /TimesBI-ISOL1 FS} bind def /TBIG {300 /TimesBI-ISOL1 FS} bind def /SK {200 10 sub /Symbol FS} bind def /SM {250 12 sub /Symbol FS} bind def /SG {300 14 sub /Symbol FS} bind def /nshowG {TG show} bind def /kshowG {TIG show} bind def /bshowG {TBG show} bind def /bishowG {TBIG show} bind def /ishowG {TM 0 -60 rmoveto show 0 60 rmoveto} bind def /ebshowG {TBM 0 200 rmoveto show 0 -200 rmoveto} bind def /sshowG {SG show} bind def /nshowM {TM show} bind def /kshowM {TIM show} bind def /bshowM {TBM show} bind def /bishowM {TBIM show} bind def /ishowM {TK 0 -40 rmoveto show 0 40 rmoveto} bind def /ebshowM {TBK 0 160 rmoveto show 0 -160 rmoveto} bind def /sshowM {SM show} bind def /nshowK {TK show} bind def /kshowK {TIK show} bind def /bshowK {TBK show} bind def /bishowK {TBIK show} bind def /ishowK {TKi 0 -30 rmoveto show 0 30 rmoveto} bind def /ebshowK {TBKe 0 130 rmoveto show 0 -130 rmoveto} bind def /sshowK {SK show} bind def /tzo {0.0 1.0 1.0 0.0} bind def %Reproduktionsfarben /tzl {1.0 0.0 1.0 0.0} bind def /tzv {1.0 1.0 0.0 0.0} bind def /tzc {1.0 0.0 0.0 0.0} bind def /tzm {0.0 1.0 0.0 0.0} bind def /tzy {0.0 0.0 1.0 0.0} bind def /tzn {0.0 0.0 0.0 1.00} bind def %Graureihe /tzd {0.0 0.0 0.0 0.75} bind def /tzz {0.0 0.0 0.0 0.50} bind def /tzh {0.0 0.0 0.0 0.25} bind def /tzw {0.0 0.0 0.0 0.00} bind def /tzr {0.0 1.0 0.5 0.0} bind def %Elementarfarben /tzg {1.0 0.0 0.5 0.0} bind def /tzb {1.0 0.5 0.0 0.0} bind def /tzj {0.0 0.0 1.0 0.0} bind def /tzrz {0.0 1.0 0.5 0.5} bind def %Elementarfarben vergraut /tzgz {1.0 0.0 0.5 0.5} bind def /tzbz {1.0 0.5 0.0 0.5} bind def /tzjz {0.0 0.0 1.0 0.5} bind def /tfo {tzo setcmykcolor} bind def /tfl {tzl setcmykcolor} bind def /tfv {tzv setcmykcolor} bind def /tfc {tzc setcmykcolor} bind def /tfm {tzm setcmykcolor} bind def /tfy {tzy setcmykcolor} bind def /tfn {tzn setcmykcolor} bind def /tfd {tzd setcmykcolor} bind def /tfz {tzz setcmykcolor} bind def /tfh {tzh setcmykcolor} bind def /tfw {tzw setcmykcolor} bind def /tfr {tzr setcmykcolor} bind def /tfg {tzg setcmykcolor} bind def /tfb {tzb setcmykcolor} bind def /tfj {tzj setcmykcolor} bind def /tfrz {tzrz setcmykcolor} bind def /tfgz {tzgz setcmykcolor} bind def /tfbz {tzbz setcmykcolor} bind def /tfjz {tzjz setcmykcolor} bind def /A4quer {598 0 tl 90 rotate} def /setcmyknew {setcmykcolor} def /outSM {sshowM} def /outSK {sshowK} def /outxshowf {setcmykcolor show} def %for output test only /tspace {dup abs 1.0 le {( ) show} if dup dup -1.0 le exch -10 gt and {( ) show} if dup dup 1.0 gt exch 10 lt and {( ) show} if dup dup 1.0 gt exch 10 ge and {( ) show} if } bind def /trushow {tspace 0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /troshow {0.005 add 100 mul truncate 100 div 10 string cvs show} bind def /trushow4 {0.00005 add 10000 mul truncate 10000 div 10 string cvs show} bind def /W 9 array def /W [500 555 435 435 575 555 525 500 475] def /YIXL 88 array def /YIXM 88 array def /YIXS 88 array def /YEXP0 88 array def /YEXP1 88 array def /YEXP2 88 array def /YEXP3 88 array def /YEXP4 88 array def /YEXP5 88 array def /YEXP6 88 array def /YEXP7 88 array def /Xi 88 array def /Yi 88 array def /KURV$1 8 array def %8 curves, Sensitivity /KURV$2 8 array def %8 curves, Saturation /KURV$1 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURV$2 [(U") (L") (M") (S") (N") (J") (B") (J")] def /KURVA 8 array def %8 actual curves /KURVA1 8 array def %8 curves, Sensitivity, one or two colours /KURVA2 8 array def %8 curves, Saturation, one or two colours /KURVA1 [2 2 1 1 2 0 0 0 0] def /KURVA2 [2 2 1 1 2 0 0 0 0] def /IDAI1 8 array def %8 curves, Sensitivity, actual setdash data, first curve /IDAI2 8 array def %8 curves, Saturation, actual setdash data, second curve /IDAI00 8 array def %8 curves, Sensitivity, setdash data, first curve /IDAI01 8 array def %8 curves, Saturation, setdash data, first curve /IDAI10 8 array def %8 curves, Sensitivity, setdash data, second curve /IDAI11 8 array def %8 curves, Saturation, setdash data, second curve /IDAI00 [100 100 000 000 100 300 000 300] def /IDAI01 [100 100 000 000 000 000 000 000] def /IDAI10 [100 100 000 000 100 100 000 100] def /IDAI11 [100 100 000 000 000 000 100 000] def /FKUC1 8 array def %Actual colour C, Sensitivity /FKUC2 8 array def %Actual colour C, Saturation /FKUM1 8 array def %Actual colour M, Sensitivity /FKUM2 8 array def %Actual colour M, Saturation /FKUY1 8 array def %Actual colour Y, Sensitivity /FKUY2 8 array def %Actual colour Y, Saturation /FKUN1 8 array def %Actual colour N, Sensitivity /FKUN2 8 array def %Actual colour N, Saturation /FKUCI00 8 array def %Cyan, Colour 1, Sensitivity /FKUCI01 8 array def %Cyan, Colour 2 on top, Sensitivity /FKUCI10 8 array def %Cyan, Colour 1, Saturation /FKUCI11 8 array def %Cyan, Colour 2 on top, Saturation /FKUCI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI01 [1.0 0.0 0.0 0.0 1.0 1.0 0.0 1.0] def /FKUCI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUCI11 [1.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUMI00 8 array def %Magenta, Colour 1, Sensitivity /FKUMI01 8 array def %Magenta, Colour 2 on top, Sensitivity /FKUMI10 8 array def %Magenta, Colour 1, Saturation /FKUMI11 8 array def %Magenta, Colour 2 on top, Saturation /FKUMI00 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI01 [0.0 0.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUMI10 [0.0 0.0 1.0 1.0 0.0 0.0 0.0 0.0] def /FKUMI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUYI00 8 array def %Yellow, Colour 1, Sensitivity /FKUYI01 8 array def %Yellow, Colour 2 on top, Sensitivity /FKUYI10 8 array def %Yellow, Colour 1, Saturation /FKUYI11 8 array def %Yellow, Colour 2 on top, Saturation /FKUYI00 [0.0 0.0 0.0 0.0 0.0 1.0 0.0 1.0] def /FKUYI01 [0.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUYI10 [0.0 0.0 0.0 0.0 1.0 1.0 1.0 1.0] def /FKUYI11 [0.0 1.0 0.0 0.0 0.0 0.0 1.0 0.0] def /FKUNI00 8 array def %Black, Colour 1, Sensitivity /FKUNI01 8 array def %Black, Colour 2 on top, Sensitivity /FKUNI10 8 array def %Black, Colour 1, Saturation /FKUNI11 8 array def %Black, Colour 2 on top, Saturation /FKUNI00 [1.0 1.0 0.0 0.0 1.0 0.0 0.0 0.0] def /FKUNI01 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI10 [1.0 1.0 0.0 0.0 0.0 0.0 0.0 0.0] def /FKUNI11 [0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0] def /XRGAI 8 array def /XRG$I 8 array def /XBJAI 8 array def /XBJ$I 8 array def /XRGAI [ 495 495 495 495 575 575 575 575 ] def /XRG$I [(495) (495) (495) (495) (575) (575) (575) (575)] def /XBJAI [ 495 495 495 495 525 500 475 435 ] def /XBJ$I [(495) (495) (495) (495) (525) (500) (475) (435)] def /MULX 0600 def /MULY 1200 0.8 mul def /JPPM 4 def /CY 0.35 def /CX 50 def %%EndProlog gsave /lanind 0 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /xchartg where {pop /xchart 15 def} {/xchart 15 def} ifelse 4 /Times-ISOL1 FS 205 86 moveto ( XE331-8 ) show %(Wavelength change of LMS in JB colour vision) showen %(Wellenl\344ngen\255\304nderung von LMS beim JB\255Farbensehen) showde 72 90 translate %0 1 15 {/xchart exch def %xchart=0,15 gsave xchart 0 eq {/ILK 0 def /ILS 0 def /ILT 0 def/ILU 1 def} if %ILT=0 NO threshold xchart 1 eq {/ILK 0 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 2 eq {/ILK 1 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 3 eq {/ILK 1 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 4 eq {/ILK 2 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 5 eq {/ILK 2 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 6 eq {/ILK 3 def /ILS 0 def /ILT 0 def/ILU 1 def} if xchart 7 eq {/ILK 3 def /ILS 1 def /ILT 0 def/ILU 1 def} if xchart 8 eq {/ILK 0 def /ILS 0 def /ILT 1 def/ILU 0 def} if %ILT=1 threshold xchart 9 eq {/ILK 0 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 10 eq {/ILK 1 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 11 eq {/ILK 1 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 12 eq {/ILK 2 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 13 eq {/ILK 2 def /ILS 1 def /ILT 1 def/ILU 0 def} if xchart 14 eq {/ILK 3 def /ILS 0 def /ILT 1 def/ILU 0 def} if xchart 15 eq {/ILK 3 def /ILS 1 def /ILT 1 def/ILU 0 def} if /IKOM 3 def %N curve, not used /ILN 3 def %U&T /JPPM 2 def %three curves ILT 0 eq {/ta 0.0 def} if ILT 1 eq {/ta 0.007 def} if 0.01 MM 0.01 MM scale 30 setlinewidth [ ] 0 setdash 0.0 0.0 0.0 0.5 setcmykcolor 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto closepath fill /Xa {(a) ishowM} def /Xo {(o) ishowM} def /U0a {tfn (U) bishowM tfy (a) ishowM} def /N0a {tfn (N) bishowM tfc (a) ishowM} def /W0a {tfn (W) bishowM tfm (a) ishowM} def /U0o {tfn (U) bishowM tfy (o) ishowM} def /N0o {tfn (N) bishowM tfc (o) ishowM} def /W0o {tfn (W) bishowM tfm (o) ishowM} def ILN 0 eq {%U,L,M,570,540, N=NAMES /X0 {tfn (U) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 1 eq {%V,L,S,570,435 /X0 {tfn (V) bishowM} def /X1 {tfo (P) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfo (P) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfo (570) ishowK} def /X6 {tfv (435) ishowK} def} if ILN 2 eq {%W,S,M,435,540 /X0 {tfn (W) bishowM} def /X1 {tfv (T) bishowM} def /X2 {tfl (D) bishowM} def /X3 {tfv (T) ishowK} def /X4 {tfl (D) ishowK} def /X5 {tfv (435) ishowK} def /X6 {tfl (540) ishowK} def} if ILN 3 eq {%V,L,S,555(U),435 /X0 {tfc (N) bishowM} def /X1 {tfy (U) bishowM} def /X2 {tfv (T) bishowM} def /X3 {tfy (U) ishowK} def /X4 {tfv (T) ishowK} def /X5 {tfy (555) ishowK} def /X6 {tfv (435) ishowK} def} if /AF1 0.5 def /AF2 0.5 def /XRGA {XRGAI ILK get} def /XBJA {XBJAI ILK get} def /XRG$ {XRG$I ILK get} def /XBJ$ {XBJ$I ILK get} def /W0 {W 0 get} def /W1 {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2 {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def /W3 {W 3 get} def /W4 {W 4 get} def /W5 {W 5 get} def /W6 {W 6 get} def /W7 {W 7 get} def /W8 {W 8 get} def %function value for curve U normalized to 1 at 9 wavelengths %XRGA, XJBA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YU1 {XRGA W0 sub CX div dup mul CY mul neg} def /YU2 {XBJA W0 sub CX div dup mul CY mul neg} def /YUL {W1 W0 sub CX div dup mul CY mul neg} def /YUM {W2 W0 sub CX div dup mul CY mul neg} def /YUT {W3 W0 sub CX div dup mul CY mul neg} def /YUJ {W4 W0 sub CX div dup mul CY mul neg} def /YUU {W5 W0 sub CX div dup mul CY mul neg} def /YUM {W6 W0 sub CX div dup mul CY mul neg} def /YUG {W7 W0 sub CX div dup mul CY mul neg} def /YUB {W8 W0 sub CX div dup mul CY mul neg} def %function value for curve P normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YP1 {XRGA W1 sub CX div dup mul CY mul neg} def /YP2 {XBJA W0 sub CX div dup mul CY mul neg} def /YPP {W1 W1 sub CX div dup mul CY mul neg} def /YPD {W2 W1 sub CX div dup mul CY mul neg} def /YPT {W3 W1 sub CX div dup mul CY mul neg} def /YPJ {W4 W1 sub CX div dup mul CY mul neg} def /YPU {W5 W1 sub CX div dup mul CY mul neg} def /YPM {W6 W1 sub CX div dup mul CY mul neg} def /YPG {W7 W1 sub CX div dup mul CY mul neg} def /YPB {W8 W1 sub CX div dup mul CY mul neg} def %function value for curve D normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YD1 {XRGA W2 sub CX div dup mul CY mul neg} def /YD2 {XBJA W2 sub CX div dup mul CY mul neg} def /YDP {W1 W2 sub CX div dup mul CY mul neg} def /YDD {W2 W2 sub CX div dup mul CY mul neg} def /YDT {W3 W2 sub CX div dup mul CY mul neg} def /YDJ {W4 W2 sub CX div dup mul CY mul neg} def /YDU {W5 W2 sub CX div dup mul CY mul neg} def /YDM {W6 W2 sub CX div dup mul CY mul neg} def /YDG {W7 W2 sub CX div dup mul CY mul neg} def /YDB {W8 W2 sub CX div dup mul CY mul neg} def %function value for curve T normalized to 1 at 9 wavelengths %XRGA, XBJA, 570(L), 540(M), 435(S), 575(J), 555(U), 525(M), 500(G), 475(B) /YT1 {XRGA W3 sub CX div dup mul CY mul neg} def /YT2 {XBJA W3 sub CX div dup mul CY mul neg} def /YTP {W1 W3 sub CX div dup mul CY mul neg} def /YTD {W2 W3 sub CX div dup mul CY mul neg} def /YTT {W3 W3 sub CX div dup mul CY mul neg} def /YTJ {W4 W3 sub CX div dup mul CY mul neg} def /YTU {W5 W3 sub CX div dup mul CY mul neg} def /YTM {W6 W3 sub CX div dup mul CY mul neg} def /YTG {W7 W3 sub CX div dup mul CY mul neg} def /YTB {W8 W3 sub CX div dup mul CY mul neg} def 0 1 76 {/i exch def %i=0,1,76 /XEXI i 5 mul 380 add def YIXL i XEXI W1 sub CX div dup mul CY mul neg put YIXM i XEXI W2 sub CX div dup mul CY mul neg put YIXS i XEXI W3 sub CX div dup mul CY mul neg put % ILT 1 eq {%ILT=1 % /EYIXL 10 YIXL i get exec exp ta add def % YIXL i EYIXL log put % /EYIXM 10 YIXM i get exec exp ta add def % YIXM i EYIXM log put % /EYIXS 10 YIXS i get exec exp ta add def % YIXS i EYIXS log put % } if %ILT=1 } for %i=0,1,76 %ILT 1 eq {%ILT=1 % /EYU1 10 YU1 exp ta add def % /YU1 EYU1 log def % /EYP1 10 YP1 exp ta add def % /YP1 EYP1 log def % /EYD1 10 YD1 exp ta add def % /YD1 EYD1 log def % /EYT1 10 YT1 exp ta add def % /YT1 EYT1 log def % } if %ILT=1 /YM5X5 YIXM 19 get YU1 YD1 sub add def /YS5X5 YIXS 19 get def 0 1 76 {/i exch def %i=0,1,76 /YEXL {YIXL i get} def /YEXM {YIXM i get} def /YEXS {YIXS i get} def ILT 1 eq {%ILT=1 /EYEXL 10 YEXL exp ta add def /YEXL EYEXL log def YIXL i YEXL put /EYEXM 10 YEXM exp ta add def /YEXM EYEXM log def YIXM i YEXM put /EYEXS 10 YEXS exp ta add def /YEXS EYEXS log def YIXS i YEXS put } if %ILT=1 /YEXU {YEXL AF1 mul YEXM AF2 mul add} def /YEXN {YEXS YEXU add 0.5 mul} def /YEXJ {YEXN YEXU YEXN sub 0.3333 mul add} def /YEXB {YEXN YEXS YEXN sub 0.3333 mul add} def 0 1 JPPM {/j exch def %j=0,JPPM IKOM 0 eq {/YEXA YEXN def} if IKOM 1 eq {/YEXA YEXJ def} if IKOM 2 eq {/YEXA YEXB def} if IKOM 3 eq {/YEXA YEXN def} if ILS 0 eq {%ILS=0 j 0 eq {YEXP0 i YEXU put} if j 1 eq {YEXP1 i YEXL put} if j 2 eq {YEXP2 i YEXM put} if j 3 eq {YEXP3 i YEXS put} if j 4 eq {YEXP4 i YEXA put} if } if %ILS=0 ILS 1 ge {%ILS>=1 j 0 eq {YEXP0 i 0.0 put} if j 1 eq {YEXP1 i YEXL YEXU sub put} if j 2 eq {YEXP2 i YEXM YEXU sub put} if j 3 eq {YEXP3 i YEXS YEXU sub put} if j 4 eq {YEXP4 i YEXN YEXA sub put} if } if %ILS>=1 } for %j=0,JPPM } for %i=0,1,76 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM ILU 1 eq {4900 550 moveto (u) bishowM} if 050 3800 moveto ILS 1 le {%ILS=0,1 tfw TBM (logarithm. ) showde (logarithmic ) showen N0a tfw TBM} if %ILS=0,1 ILS 0 eq {%ILS=0 tfw TBM (\255Empfindlichkeit) showde (\255sensitivity) showen } if %ILS=0 ILS 1 eq {%ILS=1 tfw TBM (\255S\344ttigung) showde (\255excitation) showen } if %ILS=1 ILS 2 eq {%ILS=2 tfw TBM (Empfindlichkeitsverh\344ltnis) showde (Cone sensitivity ratio) showen } if %ILS=2 050 3500 moveto N0a tfw ( = \050 ) bshowM U0o tfw 0 50 rmoveto 120 /Symbol FS ( \267 ) show 0 -50 rmoveto X2 Xo tfw ( \051) bshowM 20 100 rmoveto (0,5) bshowK 0 -100 rmoveto 010 3200 moveto tfw (log) bshowM 50 0 rmoveto N0a tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto U0o 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM 010 2900 moveto ILS 0 eq {%ILS=0 (log [ ) bshowM N0a tfw (, ) bshowM U0o tfw (, ) bshowM X2 Xo ( ]) bshowM} if %ILS=0 ILS 1 eq {(log [) bshowM U0o tfw (/) bshowM N0a tfw (, ) bshowM X2 Xo tfw (/) bshowM N0a ( ]) bshowM} if %ILS=1 ILS 2 eq {(0,5 log [) bshowM U0o tfw (/) bshowM X2 Xo tfw (, ) bshowM X2 Xo tfw (/) bshowM U0o ( ]) bshowM} if %ILS=2 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 555\051 / 50) bshowM /W1K {W 1 get ILK 0 eq {-20 add} if ILK 1 eq {-10 add} if ILK 3 eq { 10 add} if} def /W2K {W 2 get ILK 0 eq { 20 add} if ILK 1 eq { 10 add} if ILK 3 eq {-10 add} if} def 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto U0o 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfy W1K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tfv W2K cvi 6 string cvs ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM tfy (J) ishowK tfv (B) ishowK tfw (=) bshowM (495) bshowM %3100 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto U0o tfw %YU1 YP1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YP1 sub abs troshow %3100 3200 moveto tfw (log) bshowM 30 0 rmoveto X2 Xa 50 0 rmoveto %tfw (= log) bshowM 50 0 rmoveto X2 Xo tfw %YU1 YD1 sub 0 ge {( + )} {( - )} ifelse bshowM YU1 YD1 sub abs troshow tfw 550 350 translate 50 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul rlineto stroke 0 ILS 0 eq {2700} {3000} ifelse 0.8 mul moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-2) () (-1) () ( 0)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,1) (-1,1) ( 0,9) ( 2,9)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten ILU 1 eq {%ILU=1 0 1 3 {/i exch def %i=0,3 /ixt {-180 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt 150 moveto tu i get exec show } for %i=0,3 % 555 nm; u=0.0 /ixt -180 1.55 1200 mul add def /ixl 240 1.55 1200 mul add def 0.25 0.0 1.0 0.0 setcmykcolor ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (555) show ixl 75 moveto 0 -150 rlineto stroke } if %ILU=1 %!x-Achse: 100 Einheiten = 1200 Skalen-Einheiten tfw 0 1 3 {/i exch def /ixt { 20 i 1200 mul add} def /ixl {240 i 1200 mul add} def ixt -320 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 100 S-Einheiten = 960 = 1200*0.8 Skalen-Einheiten 0 1 4 {/i exch def /iyt {100 i 0480 mul add} def /iyl {240 i 0480 mul add} def -500 iyt moveto ILS 0 eq {tye} {tys} ifelse i get exec show -75 iyl moveto 150 0 rlineto stroke } for %vetical wavelength 30 setlinewidth [100 100] 0 setdash 240 W1K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W1K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W1K cvi 6 string cvs bshowM %(nm) bshowM 240 W2K 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W2K 400 sub 100 div 1200 mul add ILS 0 eq {1700}{1250} ifelse moveto W2K cvi 6 string cvs bshowM %(nm) bshowM /W12 W1K W2K add 0.5 mul def 240 W12 400 sub 100 div 1200 mul add 0 moveto 0 2400 rlineto stroke 240 30 add W12 400 sub 100 div 1200 mul add 400 moveto W12 cvi 6 string cvs bshowM %(nm) bshowM [ ] 0 setdash 50 setlinewidth /yta 0 def ILS 0 ne ILT 1 eq and {/yta 650 def} if /xts 150 3 1200 mul add def /yts 300 2 0480 mul add yta add def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (T) bshowM (s) ishowK (=) bshowM ta trushow4 50 setlinewidth %Cero point at 555 nm /X0T {555 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor ILU 1 eq {/Y0C 445 def /Y1C 2000 def} {/Y0C 050 def /Y1C 2400 def} ifelse X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 0 1 JPPM {/j exch def %j=0,JPPM ILS 0 eq {/IORY 2700 0.8 mul def} {/IORY 1500 0.8 mul def} ifelse 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put j 0 eq {Yi i YEXP0 i get put} if j 1 eq {Yi i YEXP1 i get put} if j 2 eq {Yi i YEXP2 i get put} if j 3 eq {Yi i YEXP3 i get put} if j 4 eq {Yi i YEXP4 i get put} if j 5 eq {Yi i YEXP5 i get put} if j 6 eq {Yi i YEXP6 i get put} if j 7 eq {Yi i YEXP7 i get put} if } for %i=0,1,76 j 3 le {%j<=3 ILS 0 eq {%ILS=0 FKUC1 j FKUCI00 j get put FKUM1 j FKUMI00 j get put FKUY1 j FKUYI00 j get put FKUN1 j FKUNI00 j get put FKUC2 j FKUCI01 j get put FKUM2 j FKUMI01 j get put FKUY2 j FKUYI01 j get put FKUN2 j FKUNI01 j get put IDAI1 j IDAI00 j get put IDAI2 j IDAI01 j get put KURVA j KURVA1 j get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 j FKUCI10 j get put FKUM1 j FKUMI10 j get put FKUY1 j FKUYI10 j get put FKUN1 j FKUNI10 j get put FKUC2 j FKUCI11 j get put FKUM2 j FKUMI11 j get put FKUY2 j FKUYI11 j get put FKUN2 j FKUNI11 j get put IDAI1 j IDAI10 j get put IDAI2 j IDAI11 j get put KURVA j KURVA2 j get put } if %ILS>=1 } if %j<=3 j 4 eq {%j=4 ILS 0 eq {%ILS=0 FKUC1 4 FKUCI00 4 IKOM add get put FKUM1 4 FKUMI00 4 IKOM add get put FKUY1 4 FKUYI00 4 IKOM add get put FKUN1 4 FKUNI00 4 IKOM add get put FKUC2 4 FKUCI01 4 IKOM add get put FKUM2 4 FKUMI01 4 IKOM add get put FKUY2 4 FKUYI01 4 IKOM add get put FKUN2 4 FKUNI01 4 IKOM add get put IDAI1 4 IDAI00 4 IKOM add get put IDAI2 4 IDAI01 4 IKOM add get put KURVA 4 KURVA1 4 IKOM add get put } if %ILS=0 ILS 1 ge {%ILS>=1 FKUC1 4 FKUCI10 4 IKOM add get put FKUM1 4 FKUMI10 4 IKOM add get put FKUY1 4 FKUYI10 4 IKOM add get put FKUN1 4 FKUNI10 4 IKOM add get put FKUC2 4 FKUCI11 4 IKOM add get put FKUM2 4 FKUMI11 4 IKOM add get put FKUY2 4 FKUYI11 4 IKOM add get put FKUN2 4 FKUNI11 4 IKOM add get put IDAI1 4 IDAI10 4 IKOM add get put IDAI2 4 IDAI11 4 IKOM add get put KURVA 4 KURVA2 4 IKOM add get put } if %ILS>=1 } if %j=4 /KURVM {KURVA j get} def KURVM 0 gt {%if KURVM>0 then KURVE 1 1 KURVM {/KURV exch def %KURV=1,KURVM /IDA1 {IDAI1 j get cvi} def /IDA2 {IDAI2 j get cvi} def KURV 1 eq {[ ] 0 setdash} if KURV 2 eq j 0 eq and {%KURV=2 /IDA1 {IDAI1 j get} def /IDA2 {IDAI2 j get} def [ IDA1 IDA2] 0 setdash } if %KURV=2 %/TKk {100 /Times-ISOL1 FS} bind def %TKk % 100 ILS 1600 mul add 2000 200 j mul sub moveto % KURVM trushow4 ( ) show % j trushow4 ( ) show % IDA1 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC1 j get trushow4 ( ) show % FKUM1 j get trushow4 ( ) show % FKUY1 j get trushow4 ( ) show % FKUN1 j get trushow4 ( ) show % IDA2 trushow4 ( ) show % KURVA j get trushow4 ( ) show % FKUC2 j get trushow4 ( ) show % FKUM2 j get trushow4 ( ) show % FKUY2 j get trushow4 ( ) show % FKUN2 j get trushow4 ( ) show KURV 1 eq {%KURV=1 /FKUC {FKUC1 j get} def /FKUM {FKUM1 j get} def /FKUY {FKUY1 j get} def /FKUN {FKUN1 j get} def } if %KURV=1 KURV 2 eq {%KURV=2 /FKUC {FKUC2 j get} def /FKUM {FKUM2 j get} def /FKUY {FKUY2 j get} def /FKUN {FKUN2 j get} def } if %KURV=2 FKUC FKUM FKUY FKUN setcmykcolor 50 setlinewidth /xst {Xi 0 get 555 sub CX div MULX mul} bind def /yst {IORY Yi 0 get MULY mul add} bind def xst yst moveto 1 3 71 {/i exch def %i=0,75 ab 380nm bis 710nm %i 0 eq { %100 ILS 300 mul add 1900 200 KURV mul sub moveto (Xi=) show %Xi i get trushow4 ( Yi=) show %Yi i get trushow4 % } if /xst {Xi i get 555 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 555 sub CX div MULX mul} bind def /y20 {IORY Yi i 1 add get MULY mul add} bind def /x21 {Xi i 2 add get 555 sub CX div MULX mul} bind def /y21 {IORY Yi i 2 add get MULY mul add} bind def /x22 {Xi i 3 add get 555 sub CX div MULX mul} bind def /y22 {IORY Yi i 3 add get MULY mul add} bind def x21 y21 x21 y21 x22 y22 curveto } for %i=0,75 ab 380nm bis 710nm stroke } for %KURV=1,KURVM } if %if KURVM>0 then KURVE } for %j=0,JPPM X0T neg 0 translate -550 -400 translate showpage grestore %} for %xchart=0,15 %%Trailor %%EndDocument EndEPSF grestore gsave BeginEPSF 219 MM 080 MM add 008 MM translate %80 MM Breite von TestStreifen 10 /Times-ISOL1 FS 53 MM 1 MM moveto () show 1 1 scale -77 21 MM sub -91 translate %%BeginDocument: Bild 29 Teststreifen Ueberlaenge %line 509 %%EndDocument EndEPSF grestore gsave BeginEPSF -0.0 MM -0.0 MM translate %xy-Verschiebung Rechteckrahmen nach innen% %%BeginDocument: Bild 30 %Rechteckrahmen %line 519 %!PS-Adobe-3.0 EPSF-3.0 Frame arround with Internet text DG02 20061001 %%BoundingBox: 0 0 598 845 %%EndProlog gsave /lanind 1 def /lantex [(G) (E) (S) (N) (I) (J) (M)] def /showde {0 lanind eq {show} {pop} ifelse} bind def /showen {1 lanind eq {show} {pop} ifelse} bind def /showes {2 lanind eq {show} {pop} ifelse} bind def /showfr {3 lanind eq {show} {pop} ifelse} bind def /showit {4 lanind eq {show} {pop} ifelse} bind def /showjp {5 lanind eq {show} {pop} ifelse} bind def /showm {6 lanind eq {show} {pop} ifelse} bind def /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 0 def /lanind2 0 def} ifelse /colormg where {pop /colorm1 colormg def /colorm2 colormg def} {/colorm1 0 def /colorm2 0 def} ifelse /xcolorg where {pop /xcolor1 xcolorg def /xcolor2 xcolorg def} {/xcolor1 0 def /xcolor2 0 def} ifelse /xchartg where {pop /xchart1 xchartg def /xchart2 xchartg def} {/xchart1 0 def /xchart2 0 def} ifelse /lanind lanind1 def %lanind1 1 lanind2 {/lanind exch def %output showpage /colorm colorm1 def %colorm1 1 colorm2 {/colorm exch def %output showpage /xcolor xcolor1 def %xcolor1 1 xcolor2 {/xcolor exch def %output showpage /xchart xchart1 def %xchart1 1 xchart2 {/xchart exch def %output showpage /GSS$ where {pop /LSS$ GSS$ def} {/LSS$ (1) def} ifelse /GSC$ where {pop /LSC$ GSC$ def} {/LSC$ (N) def} ifelse /GSX$ where {pop /LSX$ GSX$ def} {/LSX$ (0) def} ifelse /GSY$ where {pop /LSY$ GSY$ def} {/LSY$ (0) def} ifelse /GEX$ where {pop /LEX$ GEX$ def} {/LEX$ (P.PS./PDF) def} ifelse /GEY$ where {pop /LEY$ GEY$ def} {/LEY$ (P.DAT) def} ifelse /IMES where {pop %/IMES IMES def } {/IMES 0 def} ifelse /i*ptrsc where {pop %/i*ptrsc i*ptrsc def } {/i*ptrsc 0 def} ifelse gsave /xchartg where {pop /xchart xchartg def} {/xchart 0 def} ifelse /scountg where {pop /scount scountg def} {/scount 1 def} ifelse %xchart 0 eq {%beg if xchart=0 0 setgray 1.0 1.0 scale 0.0 MM 0.0 MM translate 0.15 MM setlinewidth /x 20 array def /y 20 array def /d 20 array def /x [000 296 296 000 002 294 294 002 005 291 291 005 %speziell 006 290 290 006 008 288 288 008 ] def /y [000 000 210 210 002 002 208 208 005 005 205 205 %speziell 006 006 204 204 008 008 202 202 ] def /d [060 017 -60 -17 058 015 -58 -15 056 013 -56 -13 054 011 -54 -11 052 009 -52 -09 ] def /xlu 017 MM def /ylu 017 MM def /xro 279 MM def /yro 193 MM def /xlo 017 MM def /ylo 193 MM def /xru 279 MM def /yru 017 MM def xlu 8 MM sub ylu moveto 16 MM 0 rlineto stroke xlu ylu 8 MM sub moveto 0 58 MM rlineto stroke xro 8 MM add yro moveto -58 MM 0 rlineto stroke xro yro 8 MM add moveto 0 -16 MM rlineto stroke xru 8 MM sub yru moveto 16 MM 0 rlineto stroke xru yru 8 MM sub moveto 0 16 MM rlineto stroke xlo 8 MM add ylo moveto -16 MM 0 rlineto stroke xlo ylo 8 MM add moveto 0 -16 MM rlineto stroke 1 2 7 {/i exch def %Zentrierkreise xlu ylu i MM 0 360 arc stroke xro yro i MM 0 360 arc stroke xru yru i MM 0 360 arc stroke xlo ylo i MM 0 360 arc stroke } for %i 12 4 16 {/i exch def /i0 i def %i=0,16 %0 4 16 {/i exch def /i0 i def %i=0,16 /i1 i0 1 add def /i2 i0 2 add def /i3 i0 3 add def i 16 eq {0.30 MM setlinewidth} {0.15 MM setlinewidth} ifelse 0 setgray x i0 get MM y i0 get MM moveto x i1 get MM y i1 get MM lineto x i2 get MM y i2 get MM lineto x i3 get MM y i3 get MM lineto x i0 get MM y i0 get MM lineto stroke i 16 eq {6 /Times-ISOL1 FS /x00 67 def /xdif 32 def /y0o 202.3 def /y0u 6.3 def /x0l 6.1 def /x0r 288 def /y00 22 def /ydif 32 def x00 xdif 0 mul add MM y0o MM moveto (V) show x00 xdif 0 mul add MM y0u MM moveto (C) show x00 xdif 1 mul add MM y0o MM moveto (L) show x00 xdif 1 mul add MM y0u MM moveto (M) show x00 xdif 2 mul add MM y0o MM moveto (O) show x00 xdif 2 mul add MM y0u MM moveto (Y) show x00 xdif 3 mul add MM y0o MM moveto (Y) show x00 xdif 3 mul add MM y0u MM moveto (O) show x00 xdif 4 mul add MM y0o MM moveto (M) show x00 xdif 4 mul add MM y0u MM moveto (L) show x00 xdif 5 mul add MM y0o MM moveto (C) show x00 xdif 5 mul add MM y0u MM moveto (V) show x0l MM y00 ydif 0 mul add MM moveto (V) show x0r MM y00 ydif 0 mul add MM moveto (C) show x0l MM y00 ydif 1 mul add MM moveto (L) show x0r MM y00 ydif 1 mul add MM moveto (M) show x0l MM y00 ydif 2 mul add MM moveto (O) show x0r MM y00 ydif 2 mul add MM moveto (Y) show x0l MM y00 ydif 3 mul add MM moveto (Y) show x0r MM y00 ydif 3 mul add MM moveto (O) show x0l MM y00 ydif 4 mul add MM moveto (M) show x0r MM y00 ydif 4 mul add MM moveto (L) show x0l MM y00 ydif 5 mul add MM moveto (C) show x0r MM y00 ydif 5 mul add MM moveto (V) show } if } for %i=0,16 0 1 10 {/j0 exch def /j1 j0 1 add def %j0 j0 0 eq {tzccmy0* setcmykcolor} if j0 1 eq {0 setgray} if j0 2 eq {tzmcmy0* setcmykcolor} if j0 3 eq {0 setgray} if j0 4 eq {tzycmy0* setcmykcolor} if j0 5 eq {0 setgray} if j0 6 eq {tzocmy0* setcmykcolor} if j0 7 eq {0 setgray} if j0 8 eq {tzlcmy0* setcmykcolor} if j0 9 eq {0 setgray} if j0 10 eq {tzvcmy0* setcmykcolor} if 12 4 16 {/i exch def /i0 i def %i=0,16 %0 4 16 {/i exch def /i0 i def %i=0,16 /i1 i0 1 add def /i2 i0 2 add def /i3 i0 3 add def i 16 eq {0.30 MM setlinewidth} {0.15 MM setlinewidth} ifelse x i0 get d i0 get add 16 j0 mul add MM y i0 get MM moveto x i0 get d i0 get add 16 j1 mul add MM y i0 get MM lineto stroke x i1 get MM y i1 get d i1 get add 16 j0 mul add MM moveto x i1 get MM y i1 get d i1 get add 16 j1 mul add MM lineto stroke x i2 get d i2 get add 16 j0 mul sub MM y i2 get MM moveto x i2 get d i2 get add 16 j1 mul sub MM y i2 get MM lineto stroke x i3 get MM y i3 get d i3 get add 16 j0 mul sub MM moveto x i3 get MM y i3 get d i3 get add 16 j1 mul sub MM lineto stroke } for %i=0,16 } for %j0 0.15 MM setlinewidth /s 7 MM def /s1 8 MM def /s5 36 MM def 16 1 20 {/j exch def /j0 j 16 sub def %j=16,20 /ix0 xlu 8 MM add j0 7 MM mul add def /iy0 ylu 8 MM sub def 0 1 3 {/ij exch def %ij=0,3 ij 0 eq {/ix0 xlu 8 MM add j0 7 MM mul add def /iy0 ylu 8 MM sub def} if ij 1 eq {/ix0 xru 43 MM sub j0 7 MM mul add def /iy0 yru 8 MM sub def} if ij 2 eq {/ix0 xlo 8 MM add j0 7 MM mul add def /iy0 ylo 1 MM add def} if ij 3 eq {/ix0 xro 43 MM sub j0 7 MM mul add def /iy0 yro 1 MM add def} if i*ptrsc 0 eq i*ptrsc 2 eq or {%i*ptrsc=0,2 cmy0* setcmykcolor j 16 eq {tzan j get dup dup 0 setcmykcolor ix0 0.5 MM sub iy0 0.5 MM sub s5 s1 rec fill} if tzan j get dup dup 0 setcmykcolor ix0 iy0 s s rec fill } if %i*ptrsc=0,2 i*ptrsc 1 eq i*ptrsc 3 eq or {%i*ptrsc=1,3 www* setrgbcolor j 16 eq {1 tzan j get 1 sub dup dup setrgbcolor %N ix0 0.5 MM sub iy0 0.5 MM sub s5 s1 rec fill} if 1 tzan j get sub dup dup setrgbcolor %N ix0 iy0 s s rec fill } if %i*ptrsc=1,3 i*ptrsc 4 eq i*ptrsc 5 eq or {%i*ptrsc=4,5 [/CIEBasedABC << %Farbraum und Grenzen fuer D65 /RangeABC [0 100 -128 127 -128 127] /DecodeABC [{16 add 116 div} bind {500 div} bind {200 div} bind] /MatrixABC [1 1 1 1 0 0 0 0 -1] /DecodeLMN [{dup 6 29 div ge {dup dup mul mul} {4 29 div sub 108 841 div mul} ifelse 0.9505 mul} bind {dup 6 29 div ge {dup dup mul mul} {4 29 div sub 108 841 div mul} ifelse} bind {dup 6 29 div ge {dup dup mul mul} {4 29 div sub 108 841 div mul} ifelse 1.0890 mul} bind] /WhitePoint [0.9505 1 1.089] %CIEXYZ fuer D65 >>] setcolorspace j 16 eq {tznLAB* 0 get tzwLAB* 0 get tznLAB* 0 get sub 0.25 j0 mul mul add tznLAB* 1 get tzwLAB* 1 get tznLAB* 1 get sub 0.25 j0 mul mul add tznLAB* 2 get tzwLAB* 2 get tznLAB* 2 get sub 0.25 j0 mul mul add setcolor %N ix0 0.5 MM sub iy0 0.5 MM sub s5 s1 rec fill} if tznLAB* 0 get tzwLAB* 0 get tznLAB* 0 get sub 0.25 j0 mul mul add tznLAB* 1 get tzwLAB* 1 get tznLAB* 1 get sub 0.25 j0 mul mul add tznLAB* 2 get tzwLAB* 2 get tznLAB* 2 get sub 0.25 j0 mul mul add setcolor %N ix0 iy0 s s rec fill } if %i*ptrsc=4,5 i*ptrsc 6 eq {%i*ptrsc=6 000n* setcmykcolor j 16 eq {0 0 0 tzan j get setcmykcolor ix0 0.5 MM sub iy0 0.5 MM sub s5 s1 rec fill} if 0 0 0 tzan j get setcmykcolor ix0 iy0 s s rec fill } if %i*ptrsc=6 i*ptrsc 7 eq {%i*ptrsc=7 w* setgray j 16 eq {1 tzan j get sub setgray ix0 0.5 MM sub iy0 0.5 MM sub s5 s1 rec fill} if 1 tzan j get sub setgray ix0 iy0 s s rec fill } if %i*ptrsc=7 } for %ij=0,3 } for %j=16,20 0 setgray 018 MM 008.2 MM moveto 6 /Times-Roman FS (-8) show 018 MM 006.2 MM moveto 6 /Times-Roman FS (-6) show 276 MM 008.2 MM moveto 6 /Times-Roman FS (-8) show 276 MM 006.2 MM moveto 6 /Times-Roman FS (-6) show 018 MM 202.2 MM moveto 6 /Times-Roman FS (-8) show 018 MM 204.2 MM moveto 6 /Times-Roman FS (-6) show 276 MM 202.2 MM moveto 6 /Times-Roman FS (-8) show 276 MM 204.2 MM moveto 6 /Times-Roman FS (-6) show 0 setgray 12 /Times-ISOL1 FS 61 MM 09 MM moveto (Logarithmische Zapfen\255Empfindlichkeiten und Quotienten) showde (Logarithmic cone sensitivities and ratios or differences) showen 12 /Times-ISOL1 FS 61 MM 13 MM moveto (BAM\255Pr\374fvorlage Nr. XE33; Farbensehen) showde (BAM\255test chart no. XE33; colour vision) showen 172 MM 13 MM moveto (input: ) showen (Eingabe: ) showde 12 /Times-Italic FS (cmy0* setcmykcolor) showen (cmy0* setcmykcolor) showde 12 /Times-ISOL1 FS 172 MM 9 MM moveto (output: ) showen (Ausgabe: ) showde LSC$ (N) eq { (no change compared to input) showen (keine Eingabe\344nderung) showde } if LSC$ (S) eq { (Startup (S) data dependend) showen (Startup(S)Daten abh\344ngig) showde } if LSC$ (F) eq { 12 /Times-Italic FS i*ptrsc 0 eq {(cmy0* / 000n* setcmykcolor) show} if i*ptrsc 1 eq {(olv* setrgbcolor / w* setgray) show} if i*ptrsc 2 eq {(cmy0* / nnn0* setcmykcolor) show} if i*ptrsc 3 eq {(olv* / www* setrgbcolor) show} if i*ptrsc 4 eq {(lab* setcolor) show} if i*ptrsc 5 eq {(LAB* setcolor) show} if i*ptrsc 6 eq {(000n* setcmykcolor) show} if i*ptrsc 7 eq {(w* setgray) show} if } if %0 setgray %end white and unvisible 12 /Times-ISOL1 FS 62 MM 198.5 MM moveto (www.ps.bam.de/XE33/L33) show LSS$ show (00) show LSC$ show LEX$ show %1 setgray %start white and unvisible (; ) show LSC$ (N) eq { (Start\255Ausgabe) showde (start output) showen (start output) showes (start output) showfr (start output) showit (start output) showjp (start output) showm } if LSC$ (C) eq { (Start\255Ausgabe) showde (start output) showen (start output) showes (start output) showfr (start output) showit (start output) showjp (start output) showm } if LSC$ (F) eq { (Linearisierte\255Ausgabe) showde (linearized output) showen (linearized output) showes (linearized output) showfr (linearized output) showit (linearized output) showjp (linearized output) showm } if 62 MM 194 MM moveto LSC$ (N) eq LSC$ (C) eq or { (N: Keine Ausgabe\255Linearisierung (OL) in Datei (F), Startup (S), Ger\344t (D)) showde (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showen (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showes (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showfr (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showit (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showjp (N: No Output Linearization (OL) data in File (F), Startup (S) or Device (D)) showm } {LSC$ show (: ) show (Ausgabe\255Linearisierung (OL\255Daten) ) showde (Output Linearization (OL) data ) showen (Output Linearization (OL) data ) showes (Output Linearization (OL) data ) showfr (Output Linearization (OL) data ) showit (Output Linearization (OL) data ) showjp (Output Linearization (OL) data ) showm (XE33/L33) show LSS$ show (00) show LSC$ show LEY$ show } ifelse LSC$ (F) eq { ( in der Datei (F)) showde ( in File (F)) showen ( in File (F)) showes ( in File (F)) showfr ( in File (F)) showit ( in File (F)) showjp ( in File (F)) showm } if LSC$ (S) eq { ( im Distiller Startup (S) Directory) showde ( in Distiller Startup (S) Directory) showen ( in Distiller Startup (S) Directory) showes ( in Distiller Startup (S) Directory) showfr ( in Distiller Startup (S) Directory) showit ( in Distiller Startup (S) Directory) showjp ( in Distiller Startup (S) Directory) showm } if LSC$ (D) eq { ( in PostScript Device (D)) showde ( in PostScript Device (D)) showen ( in PostScript Device (D)) showes ( in PostScript Device (D)) showfr ( in PostScript Device (D)) showit ( in PostScript Device (D)) showjp ( in PostScript Device (D)) showm } if LSC$ (T) eq { ( von Distiller Startup (S) Directory) showde ( of Distiller Startup (S) Directory) showen ( of Distiller Startup (S) Directory) showes ( of Distiller Startup (S) Directory) showfr ( of Distiller Startup (S) Directory) showit ( of Distiller Startup (S) Directory) showjp ( of Distiller Startup (S) Directory) showm } if LSC$ (E) eq { ( von PostScript Device (D)) showde ( of PostScript Device (D)) showen ( of PostScript Device (D)) showes ( of PostScript Device (D)) showfr ( of PostScript Device (D)) showit ( of PostScript Device (D)) showjp ( of PostScript Device (D)) showm } if %0 setgray %end white and unvisible 16 MM 185 MM moveto -90 rotate (Siehe \344hnliche Dateien: ) showde (See for similar files: ) showen (See for similar files: ) showes (See for similar files: ) showfr (See for similar files: ) showit (See for similar files: ) showjp (See for similar files: ) showm (http://www.ps.bam.de/XE33/) show 90 rotate 12 MM 185 MM moveto -90 rotate (Technische Information: ) showde (Technical information: ) showen (Informaci\363n t\351cnica en: ) showes (Technical information: ) showfr (Technical information: ) showit (Technical information: ) showjp (Technical information: ) showm (http://www.ps.bam.de) show 90 rotate 12 MM 103 MM moveto -90 rotate (Version 2.1, io=1,) show LSC$ (N) eq {(1) show} if LSC$ (S) eq {(1?) show} if LSC$ (D) eq {(1?) show} if LSC$ (F) eq {i*ptrsc cvishow ISYSLAB 0 eq {IMES 0 eq {(; iORS) show} {(; iLRS) show} ifelse} if ISYSLAB 1 eq {IMES 0 eq {(; iTLS) show} {(; iTRS) show} ifelse} if ISYSLAB 2 eq {IMES 0 eq {(; iDLS) show} {(; iDRS) show} ifelse} if ISYSLAB 3 eq {IMES 0 eq {(; iTLR) show} {(; iTLS) show} ifelse} if ISYSLAB 4 eq {IMES 0 eq {(; iDRS) show} {(; iDLS) show} ifelse} if ISYSTEM 0 eq {IMES 0 eq {(; oORS) show} {(; oLRS) show} ifelse} if ISYSTEM 1 eq {IMES 0 eq {(; oTLS) show} {(; oTRS) show} ifelse} if ISYSTEM 2 eq {IMES 0 eq {(; oDLS) show} {(; oDRS) show} ifelse} if ISYSTEM 3 eq {IMES 0 eq {(; oTLR) show} {(; oTLS) show} ifelse} if ISYSTEM 4 eq {IMES 0 eq {(; oDRS) show} {(; oDLS) show} ifelse} if IMES 0 eq {(, CIELAB) show} {(, CIEXYZ) show} ifelse } if 90 rotate 281 MM 185 MM moveto -90 rotate (BAM\255Registrierung: 20061001\255XE33/L33) showde (BAM registration: 20061001\255XE33/L33) showen (BAM registration: 20061001\255XE33/L33) showes (BAM registration: 20061001\255XE33/L33) showfr (BAM registration: 20061001\255XE33/L33) showit (BAM registration: 20061001\255XE33/L33) showjp (BAM registration: 20061001\255XE33/L33) showm LSS$ show (00) show LSC$ show LEX$ show 90 rotate 281 MM 74 MM moveto -90 rotate (BAM\255Material: Code=rha4ta) showde (BAM material: code=rha4ta) showen (BAM material: code=rha4ta) showes (BAM material: code=rha4ta) showfr (BAM material: code=rha4ta) showit (BAM material: code=rha4ta) showjp (BAM material: code=rha4ta) showm 90 rotate 277 MM 185 MM moveto -90 rotate /cvishow {cvi 6 string cvs show} def /cvsshow1 {10 mul cvi 0.1 mul 7 string cvs show} def ( Anwendung f\374r Messung von Drucker- oder Monitorsystemen) showde ( application for measurement of printer or monitor systems) showen ( application for measurement of printer or monitor systems) showes ( application for measurement of printer or monitor systems) showfr ( application for measurement of printer or monitor systems) showit ( application for measurement of printer or monitor systems) showjp ( application for measurement of printer or monitor systems) showm IMES 1 eq LSC$ (N) ne and { %IMES=1 (, Yr=) show Yre cvsshow1 (, XYZ) show } if %IMES=1 90 rotate /i0 8 def /i1 i0 1 add def /i2 i0 2 add def /i3 i0 3 add def 0.30 MM setlinewidth 0 setgray x i0 get MM y i0 get MM moveto x i1 get MM y i1 get MM lineto x i2 get MM y i2 get MM lineto x i3 get MM y i3 get MM lineto x i0 get MM y i0 get MM lineto stroke %} if %end if xchart=0 /xlu1 013 MM def /ylu1 010 MM def /xro1 283 MM def /yro1 200 MM def /xlo1 013 MM def /ylo1 200 MM def /xru1 283 MM def /yru1 010 MM def xlu1 4 MM sub ylu1 moveto 8 MM 0 rlineto stroke xlu1 ylu1 4 MM sub moveto 0 8 MM rlineto stroke xro1 4 MM add yro1 moveto -8 MM 0 rlineto stroke xro1 yro1 4 MM add moveto 0 -8 MM rlineto stroke xru1 4 MM sub yru1 moveto 8 MM 0 rlineto stroke xru1 yru1 4 MM sub moveto 0 8 MM rlineto stroke xlo1 4 MM add ylo1 moveto -8 MM 0 rlineto stroke xlo1 ylo1 4 MM add moveto 0 -8 MM rlineto stroke %} for %output with xchart end %} for %output with colorm end %} for %output with xcolor end %} for %output with lanind end %%Trailer %%EndDocument EndEPSF grestore gsave showpage grestore } for %end for xchartg=xchartg1,xchartg2 } for %end for pcountg=pcountg1,pcount2g } for %end for scountg=scountg1,scount2g %%Trailer