%!PS-Adobe-3.0 EPSF-3.0 JE530-4N %%BoundingBox: 70 85 226 206 %START PDFDE011.EPS /pdfmark04 where {pop} {userdict /pdfmark04 /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: http://130.149.60.45/~farbmetrik/JE53/) /Author (compare K. Richter "Computergrafik ...": ISBN 3-8007-1775-1) /Subject (goto: http://www.ps.bam.de or http://130.149.60.45/~farbmetrik) /Keywords (image reproduction, colour devices, colour vision) /Creator (klaus.richter@mac.com) /CreationDate (D:2010030112000) /ModDate (D:2010030112000) /DOCINFO pdfmark04 [ /View [ /FitB ] /DOCVIEW pdfmark04 %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} 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{/IMES 0 def} ifelse /lanindg where {pop /lanind1 lanindg def /lanind2 lanindg def} {/lanind1 1 def /lanind2 1 def} ifelse /xcolorg where {pop /xcolor xcolorg def} {/xcolor 0 def} ifelse /xchartg where {pop /xchart xchartg def} {/xchart 0 def} ifelse lanind1 1 lanind2 {/lanind exch def %output showpage gsave 72 90 translate 0.01 MM 1.00 mul dup scale 20 setlinewidth %0 0 25000 17100 0.0 0.0 0.0 0.0 colrecfi %area white grey %0 0 25000 17100 0.0 0.0 0.0 1.0 colrecst %Rahmen Schwarz TK 0 setgray /xbtex0 0 def xbtex0 1 eq {%xbtex0=1 100 -200 moveto (JE530-4) show xcolor 0 eq {(X, ) show} {(F, ) show} ifelse xchart 1 add cvishow } if %xbtex0=1 %00 1 15 {/xchart exch def %xchart=0,15 /xchartl 10 def 20 setlinewidth % xchartl 0 eq { 100 13000 translate} if % xchartl 1 eq { 6100 13000 translate} if % xchartl 2 eq { 100 08750 translate} if % xchartl 3 eq { 6100 08750 translate} if % xchartl 4 eq { 100 4500 translate} if % xchartl 5 eq { 6100 4500 translate} if % xchartl 6 eq { 100 0250 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rlineto -5400 0 rlineto closepath fill 0 setgray 150 /Times-ISOL1 FS gsave %start because of clip xchartl 00 ge xchartl 07 le and {%00<=xchartl<=07 %***************************************************************** iton 0 eq {%iton=0 300 -150 moveto (DoPo->UaUo) show /X0 {tf550 (U) bishowM} def /X1 {tf538 (D) bishowM} def /X2 {tf563 (P) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1550 500 add 2600 moveto tf538 (538) bshowM 1950 500 add 2700 moveto tf550 (550) bshowM 2350 500 add 2600 moveto tf563 (563) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 563 def /W1 538 def /W2 550 def %not used %calculate data at 550 nm, 550=380+i*5, ergibt i=(550-380)/5=34 /i 34 def /X550 380 i 5 mul add def /func563 X550 W0 sub CX div dup mul CY mul neg def /func538 X550 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func563 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf538 (538) 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 tf563 (563) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (550) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.09 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf563} if jkurv 1 eq {tf538} if jkurv 2 eq {tf550} if jkurv 3 eq {tf550} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=0 DoPo->UaUo %***************************************************************** iton 1 eq {%iton=1 300 -150 moveto (GoJo->DaDo) show /X0 {tf538 (D) bishowM} def /X1 {tf500 (G) bishowM} def /X2 {tf575 (J) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1300 500 add 2600 moveto tf500 (500) bshowM 1800 500 add 2600 moveto tf538 (538) bshowM 2300 500 add 2600 moveto tf575 (575) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 500 def /W1 575 def /W2 538 def %not used %calculate data at 525 nm, 538=380+i*5, ergibt i=(538-380)/5=31,5 /i 31.5 def /X538 380 i 5 mul add def /func500 X538 W0 sub CX div dup mul CY mul neg def /func575 X538 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,) bshowM func500 neg 1000 mul cvi 6 string cvs bshowM % (/) show func575 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf500 (500) 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 tf575 (575) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (538) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul func500 sub put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf500} if jkurv 1 eq {tf575} if jkurv 2 eq {tf538} if jkurv 3 eq {tf538} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -400 translate } if %iton=1 GoJo_DaDo %***************************************************************** iton 2 eq {%iton=2 300 -150 moveto (GoRo->JaJo) show /X0 {tf575 (J) bishowM} def /X1 {tf500 (G) bishowM} def /X2 {tf650 (R) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf550 (550) ishowK} def /X6 {tf450 (450) ishowK} def 1800 2600 moveto tf500 (500) bshowM 2700 2600 moveto tf575 (575) bshowM 3600 2600 moveto tf650 (650) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 650 def /W1 500 def /W2 575 def %not used %calculate data at 500 nm, 575=380+i*5, ergibt i=(575-380)/5=39 /i 39 def /X575 380 i 5 mul add def /func650 X575 W0 sub CX div dup mul CY mul neg def /func500 X575 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,) bshowM func500 neg 100 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf500 (500) 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 tf650 (650) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (575) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul func500 neg add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf650} if jkurv 1 eq {tf500} if jkurv 2 eq {tf575} if jkurv 3 eq {tf575} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=2 GoRo-JaJo %***************************************************************** iton 3 eq {%iton=3 300 -150 moveto (GoUo->MaMo) show /X0 {tf525 (W) bishowM} def /X1 {tf500 (G) bishowM} def /X2 {tf550 (U) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1100 500 add 2600 moveto tf500 (500) bshowM 1525 500 add 2600 moveto tf525 (525) bshowM 1950 500 add 2600 moveto tf550 (550) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 550 def /W1 500 def /W2 525 def %not used %calculate data at 525 nm, 525=380+i*5, ergibt i=(525-380)/5=29 /i 29 def /X525 380 i 5 mul add def /func550 X525 W0 sub CX div dup mul CY mul neg def /func500 X525 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func550 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf500 (500) 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 tf550 (550) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (525) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.09 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf550} if jkurv 1 eq {tf500} if jkurv 2 eq {tf525} if jkurv 3 eq {tf525} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -400 translate } if %iton=3 GoUo_MaMo %***************************************************************** iton 4 eq {%iton=4 300 -150 moveto (ToGo->BaBo) show /X0 {tf475 (B) bishowM} def /X1 {tf500 (G) bishowM} def /X2 {tf450 (T) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1150 2600 moveto tf450 (450) bshowM 1525 2600 moveto tf475 (475) bshowM 1950 2600 moveto tf500 (500) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 500 def /W1 450 def /W2 475 def %not used %calculate data at 475 nm, 475=380+i*5, ergibt i=(475-380)/5=19 /i 19 def /X475 380 i 5 mul add def /func500 X475 W0 sub CX div dup mul CY mul neg def /func450 X475 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func500 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf500 (500) 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 tf450 (450) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (475) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.09 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf500} if jkurv 1 eq {tf450} if jkurv 2 eq {tf475} if jkurv 3 eq {tf475} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=4 ToGo-BaBo %***************************************************************** iton 5 eq {%iton=5 300 -150 moveto (ToMo->CaCo) show /X0 {tf488 (C) bishowM} def /X1 {tf450 (T) bishowM} def /X2 {tf525 (W) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1150 2600 moveto tf450 (450) bshowM 1600 2600 moveto tf475 (488) bshowM 2150 2600 moveto tf500 (525) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 500 def /W1 450 def /W2 475 def %not used %calculate data at 475 nm, 475=380+i*5, ergibt i=(475-380)/5=19 /i 19 def /X475 380 i 5 mul add def /func500 X475 W0 sub CX div dup mul CY mul neg def /func450 X475 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func500 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf450 (450) 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 tf525 (525) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (488) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.09 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf525} if jkurv 1 eq {tf450} if jkurv 2 eq {tf488} if jkurv 3 eq {tf488} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=5 ToMo-CaCo %***************************************************************** iton 6 eq {%iton=6 300 -150 moveto (ToUo->GaGo) show /X0 {tf500 (G) bishowM} def /X1 {tf450 (T) bishowM} def /X2 {tf550 (U) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf550 (550) ishowK} def /X6 {tf450 (450) ishowK} def 1300 2600 moveto tf450 (450) bshowM 1850 2600 moveto tf500 (500) bshowM 2400 2600 moveto tf550 (550) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 550 def /W1 450 def /W2 500 def %not used %calculate data at 500 nm, 500=380+i*5, ergibt i=(500-380)/5=24 /i 24 def /X500 380 i 5 mul add def /func550 X500 W0 sub CX div dup mul CY mul neg def /func450 X500 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,) bshowM func550 neg 100 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf450 (450) 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 tf550 (550) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (500) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.35 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf550} if jkurv 1 eq {tf450} if jkurv 2 eq {tf500} if jkurv 3 eq {tf500} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=6 ToUo-GaGo %***************************************************************** iton 7 eq {%iton=7 300 -150 moveto (BoJo->MaMo) show /X0 {tf525 (W) bishowM} def /X1 {tf475 (B) bishowM} def /X2 {tf575 (J) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1000 500 add 2600 moveto tf475 (475) bshowM 1600 500 add 2600 moveto tf525 (525) bshowM 2200 500 add 2600 moveto tf575 (575) bshowM 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM /W0 475 def /W1 575 def /W2 525 def %not used %calculate data at 525 nm, 525=380+i*5, ergibt i=(525-380)/5=29 /i 29 def /X525 380 i 5 mul add def /func475 X525 W0 sub CX div dup mul CY mul neg def /func575 X525 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,) bshowM func475 neg 100 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf475 (475) 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 tf575 (575) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (525) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 2700 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 [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2000 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi1 i get add 0.5 mul 0.35 add put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 3 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf475} if jkurv 1 eq {tf575} if jkurv 2 eq {tf525} if jkurv 3 eq {tf525} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get put} if jkurv 1 eq {Yi i Yi1 i get put} if jkurv 2 eq {Yi i Yi2 i get put} if jkurv 3 eq {Yi i Yi3 i get put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,3 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 X0T neg 0 translate -550 -350 translate } if %iton=7 } if %00<=xchartl<=07 xchartl 08 ge xchartl 15 le and {%08<=xchartl<=15 %***************************************************************** iton 0 eq iton 1 eq or iton 6 eq or {%iton=0,1,6 300 -150 moveto (BoGo->Ca, G*, B*) show %without clip /X0 {tf488 (C) bishowM} def /X1 {tf475 (B) bishowM} def /X2 {tf500 (G) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 0700 500 add 2600 moveto tf475 (475) bshowM 1050 500 add 2600 moveto tf488 (488) bshowM 1400 500 add 2600 moveto tf500 (500) bshowM iton 6 eq {tfw ( c) bishowM (=\2551/log) bshowM X2 Xo tfw ([475]) bshowM } if 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM %new for G* and B* 2800 2100 moveto tfw (log) bshowM 30 0 rmoveto X2 (*) bshowM tfw (=) bshowM (c) bishowM 30 0 rmoveto (log\050) bshowM 30 0 rmoveto X2 Xo 30 0 rmoveto tfw (/) bshowM 30 0 rmoveto X0 Xa tfw (\051+0,5) bshowM 2800 1800 moveto tfw (log) bshowM 30 0 rmoveto X1 (*) bshowM tfw (=) bshowM (c) bishowM 30 0 rmoveto (log\050) bshowM 30 0 rmoveto X1 Xo 30 0 rmoveto tfw (/) bshowM 50 0 rmoveto X0 Xa tfw (\051+0,5) bshowM /W0 475 def /W1 500 def /W2 488 def %not used %calculate data at 488 nm, 488=380+i*5, ergibt i=(488-380)/5=21,5 /i 21.5 def /X488 380 i 5 mul add def /func475 X488 W0 sub CX div dup mul CY mul neg def /func500 X488 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func475 neg 1000 mul cvi 6 string cvs bshowM % (/) show func550 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf475 (475) 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 tf500 (500) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (488) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 240 960 add moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-1) () (0) () (+1)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 /yts 300 2 0480 mul add yta add 700 sub def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2900 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def /Yi4 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi2 i get sub put Yi4 i Yi1 i get Yi2 i get sub put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 2 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf475} if jkurv 1 eq {tf500} if jkurv 2 eq {tf488} if jkurv 3 eq {tf475} if jkurv 4 eq {tf500} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get 1 sub 0.5 add put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,2 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get 1 sub put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 /Y0475 475 W0 sub CX div dup mul CY mul def /Y1475 475 W1 sub CX div dup mul CY mul def /Yd475 Y0475 Y1475 sub def 1700 2300 moveto tfw (c) bishowM (=) bshowM iton 0 eq iton 1 eq or {(1) bshowM} if iton 6 eq {1 Yd475 neg div 100 mul cvi 100 div 6 string cvs bshowM} if iton 1 eq iton 6 eq or {%iton=1,6 with clip %cero and max line hue without clip /yt00 300 960 add def /yt01 960 def /xt00 475 550 sub CX div MULX mul def %B, 12=CX div MULX mul=600/5 /xt01 500 550 sub CX div MULX mul def %G 0 setlinewidth % fuer clip new 0.0 0.0 0.0 0.5 setcmykcolor xt00 yt00 moveto xt01 xt00 sub 0 rlineto 0 yt01 rlineto xt01 xt00 sub neg 0 rlineto 0 yt01 neg rlineto clip stroke } if %iton=1,6 with clip 40 setlinewidth /JPPM 4 def [ ] 0 setdash %continues curves 3 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf450} if jkurv 1 eq {tf475} if jkurv 2 eq {tf500} if jkurv 3 eq {tf475} if jkurv 4 eq {tf500} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get iton 6 eq {Yd475 div} if 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get iton 6 eq {Yd475 div} if 1 sub 0.5 add put} if } for /IMIN 0 def /I1 1 def /IMAX 71 def jkurv 3 ge {/IMIN 1 def /IMAX 71 def} if /xst {Xi IMIN get 550 sub CX div MULX mul} bind def /yst {IORY Yi IMIN get MULY mul add} bind def xst yst moveto IMIN 3 IMAX {/i exch def %i=0,75 ab 380nm bis 710nm /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=3,4 X0T neg 0 translate -550 -400 translate } if %iton=0,1,6 BoGo_Ca, G*, B* %***************************************************************** iton 2 eq iton 3 eq or {%iton=2,3 300 -150 moveto (GoJo->Da, J*, G*) show %without clip /X0 {tf538 (D) bishowM} def /X1 {tf500 (G) bishowM} def /X2 {tf575 (J) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 1300 500 add 2600 moveto tf500 (500) bshowM 1800 500 add 2600 moveto tf538 (538) bshowM 2300 500 add 2600 moveto tf575 (575) bshowM iton 3 eq {000 2600 moveto tfw (c) bishowM (=\2551/log) bshowM X2 Xo tfw ([500]) bshowM } if 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM %new for J* and G* 2800 2100 moveto tfw (log) bshowM 30 0 rmoveto X2 (*) bshowM tfw (=) bshowM (c) bishowM 30 0 rmoveto (log\050) bshowM 30 0 rmoveto X2 Xo 30 0 rmoveto tfw (/) bshowM 30 0 rmoveto X0 Xa tfw (\051+0,5) bshowM 2800 1800 moveto tfw (log) bshowM 30 0 rmoveto X1 (*) bshowM tfw (=) bshowM (c) bishowM 30 0 rmoveto (log\050) bshowM 30 0 rmoveto X1 Xo 30 0 rmoveto tfw (/) bshowM 50 0 rmoveto X0 Xa tfw (\051+0,5) bshowM /W0 500 def /W1 575 def /W2 538 def %not used %calculate data at 525 nm, 538=380+i*5, ergibt i=(538-380)/5=31,5 /i 31.5 def /X538 380 i 5 mul add def /func500 X538 W0 sub CX div dup mul CY mul neg def /func575 X538 W1 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,) bshowM func500 neg 1000 mul cvi 6 string cvs bshowM % (/) show func575 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf500 (500) 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 tf575 (575) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (538) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 240 960 add moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-1) () (0) () (+1)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 /yts 300 2 0480 mul add yta add 700 sub def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2900 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def /Yi4 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi2 i get sub put Yi4 i Yi1 i get Yi2 i get sub put } for %i=0,1,76 40 setlinewidth /IORY 2700 0.8 mul def /JPPM 2 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf500} if jkurv 1 eq {tf575} if jkurv 2 eq {tf538} if jkurv 3 eq {tf500} if jkurv 4 eq {tf575} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get 1 sub 0.5 add put} if } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,2 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get 1 sub put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 /Y0500 500 W0 sub CX div dup mul CY mul def /Y1500 500 W1 sub CX div dup mul CY mul def /Yd500 Y0500 Y1500 sub def 1700 2300 moveto tfw (c) bishowM (=) bshowM iton 2 eq {(1) bshowM} if iton 3 eq {1 Yd500 neg div 100 mul cvi 100 div 6 string cvs bshowM} if iton 3 eq {%iton=3 with clip %cero and max line hue without clip /yt00 300 960 add def /yt01 960 def /xt00 500 550 sub CX div MULX mul def %G, 12=CX div MULX mul=600/5 /xt01 575 550 sub CX div MULX mul def %J 0 setlinewidth % fuer clip new 0.0 0.0 0.0 0.5 setcmykcolor xt00 yt00 moveto xt01 xt00 sub 0 rlineto 0 yt01 rlineto xt01 xt00 sub neg 0 rlineto 0 yt01 neg rlineto clip stroke } if %iton=3 with clip 40 setlinewidth /JPPM 4 def [ ] 0 setdash %continues curves 3 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf500} if jkurv 1 eq {tf575} if jkurv 2 eq {tf538} if jkurv 3 eq {tf500} if jkurv 4 eq {tf575} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get iton 3 eq {Yd500 div} if 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get iton 3 eq {Yd500 div} if 1 sub 0.5 add put} if } for /IMIN 0 def /I1 1 def /IMAX 71 def jkurv 3 ge {/IMIN 1 def /IMAX 71 def} if /xst {Xi IMIN get 550 sub CX div MULX mul} bind def /yst {IORY Yi IMIN get MULY mul add} bind def xst yst moveto IMIN 3 IMAX {/i exch def %i=0,75 ab 380nm bis 710nm /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=3,4 X0T neg 0 translate -550 -400 translate } if %iton=2,3 GoJo_Da, J*, G* %***************************************************************** iton 4 eq iton 5 eq or iton 7 eq or {%iton=4,5,7 300 -150 moveto (JoR'o_O'a, R*, J*) show %ohne clip /X0 {tf594 (O') bishowM} def /X1 {tf575 (J) bishowM} def /X2 {tf613 (R) bishowM} def /X3 {tf550 (U) ishowK} def /X4 {tf450 (T) ishowK} def /X5 {tf500 (500) ishowK} def /X6 {tf450 (450) ishowK} def 2200 500 add 2600 moveto tf575 (575) bshowM 2600 500 add 2600 moveto tf594 (594) bshowM 3000 500 add 2600 moveto tf613 (613) bshowM iton 7 eq {300 2600 moveto tfw ( c) bishowM (=\2551/log) bshowM X2 Xo tfw ([575]) bshowM } if 4700 050 moveto tfw (l) outSM 30 0 rmoveto (/nm) bshowM 4900 550 moveto (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto 050 3800 moveto tfw TBM (logarithm. ) showde (logarithmic ) showen X0 Xa tfw (, ) show X0 Xo tfw TBM tfw TBM (\255Daten) showde (\255data) showen 010 3500 moveto tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( = \050) bshowM 30 0 rmoveto (log) bshowM 50 0 rmoveto X1 Xo 30 0 rmoveto tfw (+ log) bshowM 50 0 rmoveto X2 Xo tfw (\051/2) bshowM %new for R* and J* 000 2150 moveto tfw (log) bshowM 10 0 rmoveto X2 (*) bshowM tfw (=) bshowM (c) bishowM 10 0 rmoveto (log\050) bshowM 10 0 rmoveto X2 Xo 10 0 rmoveto tfw (/) bshowM 10 0 rmoveto X0 Xa tfw (\051+0,5) bshowM 000 1750 moveto tfw (log) bshowM 10 0 rmoveto X1 (*) bshowM tfw (=) bshowM (c) bishowM 10 0 rmoveto (log\050) bshowM 10 0 rmoveto X1 Xo 10 0 rmoveto tfw (/) bshowM 10 0 rmoveto X0 Xa tfw (\051+0,5) bshowM /W0 575 def /W1 613 def /W2 594 def %not used %calculate data at 525 nm, 594=380+i*5, ergibt i=(594-380)/5=43,8 /i 43.8 def /X594 380 i 5 mul add def /func575 X594 W0 sub CX div dup mul CY mul neg def /func613 X594 W1 sub CX div dup mul CY mul neg def /func575 X594 W2 sub CX div dup mul CY mul neg def 010 3200 moveto tfw (log) bshowM 50 0 rmoveto X0 Xo tfw ( = ) bshowM tfw (log) bshowM 50 0 rmoveto X0 Xa tfw ( + 0,0) bshowM func575 neg 1000 mul cvi 6 string cvs bshowM % (/) show func575 neg 1000 mul cvi 6 string cvs bshowM 010 2900 moveto (log [ ) bshowM X0 Xo tfw (, ) bshowM X0 Xa tfw (, ) bshowM X1 Xo tfw (, ) bshowM X2 Xo ( ]) bshowM 3350 3800 moveto tfw (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto ( = \050) bshowM (l) outSM ( - 550\051 / 50) bshowM 2900 3500 moveto tfw (log) bshowM 30 0 rmoveto X1 Xo 50 0 rmoveto tfw (= -0,35[) bshowM (u) bishowM 0 -60 rmoveto (l) outSK 0 60 rmoveto (-) bshowM (u) bishowM tf575 (575) 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 tf613 (613) ishowK (]) TBM tfw show (2) ebshowM 2900 2900 moveto tfw (Adaptation: ) bshowM tfw (l) outSM X3 X4 tfw (=) bshowM (594) bshowM tfw 550 350 translate 40 setlinewidth 0 0 moveto 340 12 mul 0 rlineto stroke % 0 0 moveto 0 2700 0.8 mul rlineto stroke 0 0 moveto 0 1500 0.8 mul rlineto stroke %special 0 240 960 add moveto 340 12 mul 0 rlineto stroke TBG /tx [ (400) (500) (600) (700)] def /tye [(-1) () (0) () (+1)] def /tys [(-1) ( ) ( 0) ( ) ( 1) ] def /tu [ ( -3,0) (-1,0) ( 1,0) ( 3,0)] def %!u-Achse: 100 Einheiten = 1200 Skalen-Einheiten 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 % 550 nm; u=0.0 /ixt -180 1.50 1200 mul add def /ixl 240 1.50 1200 mul add def tf550 ixt 150 moveto ( 0.0) show /ixt 20 1860 add def ixt -320 moveto (550) show ixl 75 moveto 0 -150 rlineto stroke %!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 tye i get exec show -075 iyl moveto 150 0 rlineto stroke } for /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 700 sub def xts yts 250 add moveto TBM (Threshold) showen (Schwelle) showde xts yts 25 add moveto (S) bshowM (a) ishowK (=) bshowM ta trushow4 40 setlinewidth %Cero point at 550 nm /X0T {550 380 sub 12 mul} def X0T 0 translate /Xi 88 array def /Yi 88 array def /Yi0 88 array def /Yi1 88 array def /Yi2 88 array def /Yi3 88 array def /Yi4 88 array def 0 1 76 {/i exch def %i=0,1,76 Xi i i 5 mul 380 add put /YEXP Xi i get W0 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi0 i YEXP put /YEXP Xi i get W1 sub CX div dup mul CY mul neg def /EYEXP 10 YEXP exp ta add def /YEXP EYEXP log def Yi1 i YEXP put Yi2 i Yi0 i get Yi1 i get add 0.5 mul put Yi3 i Yi0 i get Yi2 i get sub put Yi4 i Yi1 i get Yi2 i get sub put } for %i=0,1,76 /IORY 2700 0.8 mul def 0 setlinewidth % fuer clip 0.0 0.0 0.0 0.5 setcmykcolor /Y0C 450 def /Y1C 2900 def X0T neg 100 add Y0C moveto 4650 0 rlineto 0 Y1C rlineto -4650 0 rlineto 0 Y1C neg rlineto clip stroke 40 setlinewidth /JPPM 2 def [ ] 0 setdash %continues curves 0 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf575} if jkurv 1 eq {tf613} if jkurv 2 eq {tf594} if jkurv 3 eq {tf575} if jkurv 4 eq {tf613} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get 1 sub 0.5 add put} if } for /IMIN 0 def /I1 1 def /IMAX 71 def jkurv 3 ge {/IMIN 1 def /IMAX 71 def} if /xst {Xi IMIN get 550 sub CX div MULX mul} bind def /yst {IORY Yi IMIN get MULY mul add} bind def xst yst moveto IMIN 3 IMAX {/i exch def %i=0,75 ab 380nm bis 710nm /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=0,2 %additionally dashed curve, no. 2 [100 100] 0 setdash %dashed curves /jkurv 2 def %no. 2 0 0 0 1 setcmykcolor %black 0 1 76 {/i exch def Yi i Yi2 i get 1 sub put %no. 2 } for /xst {Xi 0 get 550 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 /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 /Y0575 575 W0 sub CX div dup mul CY mul def /Y1575 575 W1 sub CX div dup mul CY mul def /Yd575 Y0575 Y1575 sub def 1700 2300 moveto tfw (c) bishowM (=) bshowM iton 4 eq iton 5 eq or {(1) bshowM} if iton 7 eq {1 Yd575 neg div 100 mul cvi 100 div 6 string cvs bshowM} if iton 5 eq iton 7 eq or {%iton=5,7 with clip %cero and max line hue without clip /yt00 300 960 add def /yt01 960 def /xt00 575 550 sub CX div MULX mul def %J, 12=CX div MULX mul=600/5 /xt01 613 550 sub CX div MULX mul def %R 0 setlinewidth % fuer clip new 0.0 0.0 0.0 0.5 setcmykcolor xt00 yt00 moveto xt01 xt00 sub 0 rlineto 0 yt01 rlineto xt01 xt00 sub neg 0 rlineto 0 yt01 neg rlineto clip stroke } if %iton=5,7 with clip 40 setlinewidth /JPPM 4 def [ ] 0 setdash %continues curves 3 1 JPPM {/jkurv exch def %jkurv=0,3 jkurv 0 eq {tf575} if jkurv 1 eq {tf613} if jkurv 2 eq {tf594} if jkurv 3 eq {tf575} if jkurv 4 eq {tf613} if 0 1 76 {/i exch def jkurv 0 eq {Yi i Yi0 i get 1 sub put} if jkurv 1 eq {Yi i Yi1 i get 1 sub put} if jkurv 2 eq {Yi i Yi2 i get 1 sub put} if jkurv 3 eq {Yi i Yi3 i get iton 7 eq {Yd575 div} if 1 sub 0.5 add put} if jkurv 4 eq {Yi i Yi4 i get iton 7 eq {Yd575 div} if 1 sub 0.5 add put} if } for /IMIN 0 def /I1 1 def /IMAX 71 def jkurv 3 ge {/IMIN 1 def /IMAX 71 def} if /xst {Xi IMIN get 550 sub CX div MULX mul} bind def /yst {IORY Yi IMIN get MULY mul add} bind def xst yst moveto IMIN 3 IMAX {/i exch def %i=0,75 ab 380nm bis 710nm /xst {Xi i get 550 sub CX div MULX mul} bind def /yst {IORY Yi i get MULY mul add} bind def /x20 {Xi i 1 add get 550 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 550 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 550 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 %jkurv=3,4 X0T neg 0 translate -550 -400 translate } if %iton=4,5,7 JoR'o_O'a, R*, J* %***************************************************************** iton 6 eq {%iton=6 ToUo-GaGo } if %iton=6 ToUo-GaGo } if %08<=xchartl<=15 grestore %end because of clip % xchartl 0 eq { 100 neg 13000 neg translate} if % xchartl 1 eq { 6100 neg 13000 neg translate} if % xchartl 2 eq { 100 neg 08750 neg translate} if % xchartl 3 eq { 6100 neg 08750 neg translate} if % xchartl 4 eq { 100 neg 4500 neg translate} if % xchartl 5 eq { 6100 neg 4500 neg translate} if % xchartl 6 eq { 100 neg 0250 neg translate} if % xchartl 7 eq { 6100 neg 0250 neg translate} if % xchartl 8 eq {13500 neg 13000 neg translate} if % xchartl 9 eq {19500 neg 13000 neg translate} if % xchartl 10 eq {13500 neg 08750 neg translate} if % xchartl 11 eq {19500 neg 08750 neg translate} if % xchartl 12 eq {13500 neg 4500 neg translate} if % xchartl 13 eq {19500 neg 4500 neg translate} if % xchartl 14 eq {13500 neg 0250 neg translate} if % xchartl 15 eq {19500 neg 0250 neg translate} if %} for % xchart=0,15 showpage grestore } for %output with langind end %%Trailer