%!PS-Adobe-3.0 EPSF-3.0 http://130.149.60.45/~farbmetrik/UE49/UE49L00XX.PS 20130201 %%BoundingBox: 14 08 828 584 /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/UE49/UE49.HTM) /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) /Creator (klaus.richter@mac.com) /CreationDate (D:2013020112000) /ModDate (D:20130210112000) /DOCINFO pdfmark [ /View [ /Fit ] /DOCVIEW pdfmark /sfgray {setgray} bind def %Early Frame File (f) definition /sfrgbcolor {setrgbcolor} bind def /sfcmykcolor {setcmykcolor} bind def %line 20****************************************************** %BEG UE49/OUTLIN10.PS Emty 20120301 %END UE49/OUTLIN10.PS Emty 20120301 %**************************************************** %BEG 'UE49'OUTLIN1X.PS Other procedures for sRGB output linearization %**************************************************** %BEG COLDATA_SRGB_00.PS %BEG TRANSFER_EARLY_F.TXT **********************************2012-02-01 %Early definition of FF_LM_setgray_F0 identical to former setgray /FF_LM_setgray_F0 {setgray} bind def /FF_LM_setrgbcolor_F0 {setrgbcolor} bind def /FF_LM_setcmykcolor_F0 {setcmykcolor} bind def /FF_LM_transfer_F0 {settransfer} bind def /FF_LM_colortransfer_F0 {setcolortransfer} bind def %END TRANSFER_EARLY_F.TXT **********************************2012-02-01 %***************************************************************************** /setcolortrans_F {%BEG procedure setcolortrans_F %1MR-Transform of setgray and setcmykcolor to FF_LM_de_setrgbcolor_F %Three procedures and use of the procedure FF_LM_de_setrgbcolor_F of main FF /setgray {%BEG procedure setgray_F dup dup FF_LM_de_setrgbcolor_F %STOPs } def %END procedure setgray_F /setcmykcolor {%BEG procedure setcmykcolor_F /FF_LM_k exch def /FF_LM_y exch def /FF_LM_m exch def /FF_LM_c exch def FF_LM_k 0 eq {%FF_LM_k=0 1 FF_LM_c sub 1 FF_LM_m sub 1 FF_LM_y sub FF_LM_de_setrgbcolor_F }%FF_LM_k=0 {%FF_LM_k#0 FF_LM_c 0 eq FF_LM_m 0 eq and FF_LM_y 0 eq and {%FF_LM_k#0 and c=m=y=0 achromatic 1 FF_LM_k sub dup dup FF_LM_de_setrgbcolor_F }%FF_LM_k#0 and c=m=y=0 achromatic {%FF_LM_k#0 and c or m or y#0 chromatic 1 FF_LM_c sub 1 FF_LM_k sub mul 1 FF_LM_m sub 1 FF_LM_k sub mul 1 FF_LM_y sub 1 FF_LM_k sub mul FF_LM_de_setrgbcolor_F } ifelse %FF_LM_k#0 and c or m or y#0 chromatic } ifelse %FF_LM_k#0 } def %END procedure setcmykcolor_F /setrgbcolor {%BEG procedure setrgbcolor_F /FF_LM_b exch def /FF_LM_g exch def /FF_LM_r exch def FF_LM_r FF_LM_g FF_LM_b FF_LM_de_setrgbcolor_F %STOPr } def %BEG procedure setrgbcolor_F /settransfer {FF_LM_transfer_F} def /setcolortransfer {FF_LM_colortransfer_F} def %******************************************************************* /FF_LM_de_setrgbcolor_F { %BEG FF_LM_de_setrgbcolor_F %assumes input of rgb, which is called rgb_dyF %calculation of intended rgb*dyF, LABCh*dyF %Lab2RGBinterpolation for colorm=1 %calculation of inverse rgb'*dyF, LABCh'*dyF, which produces rgb*dyF, LABCh*dyF %requires /hab*dy362Mi 362 array def %(y=s,d,e) %requires /rgb*dy362Mi 362 array def %(y=s,d,e) %requires /LAB*dyx362Mi 362 array def %(y=s,d,e, x=LabCh) /b_dyF exch def /g_dyF exch def /r_dyF exch def %calculation of i_dyF, c_dyF, and t_dyF /maxd r_dyF def g_dyF maxd gt {/maxd g_dyF def} if b_dyF maxd gt {/maxd b_dyF def} if /mind r_dyF def g_dyF mind lt {/mind g_dyF def} if b_dyF mind lt {/mind b_dyF def} if /i_dyF maxd def /c_dyF maxd mind sub def /t_dyF i_dyF c_dyF 0.5 mul sub def /hsiF r_dyF 030 sin mul g_dyF 150 sin mul add b_dyF 270 sin mul add %y_e r_dyF 030 cos mul g_dyF 150 cos mul add %x_e 0.0001 add atan 0.5 add cvi def %range 30 ... 390 %perhaps change %to decide hab*dyF/dsF/deF ! hsiF hab*ds362Mi 0 get sub 0 le {/hsiF hsiF 360 add def} if /hsiFm30 hsiF 30 sub def %range 00 ... 360 %test grey r_dyF g_dyF sub abs 0.002 le g_dyF b_dyF sub abs 0.002 le and {%grey, not grey /r*dyM 1 def /g*dyM 1 def /b*dyM 1 def /hsiM r*dyM 030 sin mul g*dyM 150 sin mul add b*dyM 270 sin mul add %y_d r*dyM 030 cos mul g*dyM 150 cos mul add %x_d 0.0001 add atan def hsiM hab*ds362Mi 0 get sub 0 le {/hsiM hsiM 360 add def} if /hsiMm30 hsiM 30 sub def /LAB*LdyM L*Wioa def /LAB*adyM 0 def /LAB*bdyM 0 def /LAB*LdyF L*Nioa r_dyF L*Wioa L*Nioa sub mul add def /LAB*adyF 0 def /LAB*bdyF 0 def /r*dyF r_dyF def /g*dyF g_dyF def /b*dyF b_dyF def /r'*dyF r_dyF def /g'*dyF g_dyF def /b'*dyF b_dyF def }%grey {%color hsiFm30 0 lt {/hsiFm30 0 def} if %for correction to be deleted! hsiFm30 360 gt {/hsiFm30 360 def} if %calculation of intended rgb*dyM, LAB*LabdyM deintp 0 eq {%deintp=0 /r*dyM r*dd362Mi hsiFm30 get def /g*dyM g*dd362Mi hsiFm30 get def /b*dyM b*dd362Mi hsiFm30 get def /LAB*LdyM LAB*Ldd362Mi hsiFm30 get def /LAB*adyM LAB*add362Mi hsiFm30 get def /LAB*bdyM LAB*bdd362Mi hsiFm30 get def } if %deintp=0 deintp 1 eq {%deintp=1 /r*dyM r*de362Mi hsiFm30 get def /g*dyM g*de362Mi hsiFm30 get def /b*dyM b*de362Mi hsiFm30 get def /LAB*LdyM LAB*Lde362Mi hsiFm30 get def /LAB*adyM LAB*ade362Mi hsiFm30 get def /LAB*bdyM LAB*bde362Mi hsiFm30 get def } if %deintp=1 %calculation of intended rgb*dyF, LAB*LabdyF c_dyF 1 eq {%c_dy=1,#1 /r*dyF r*dyM def /g*dyF g*dyM def /b*dyF b*dyM def /LAB*LdyF LAB*LdyM def /LAB*adyF LAB*adyM def /LAB*bdyF LAB*bdyM def }%c_dyF=1 {%c_dyF#1 /t00 1.0 c_dyF 0.5 mul sub def /t0x 0.5 t_dyF 0.5 sub 0.5 mul t00 0.5 sub div add def /r*dyF t0x r*dyM t0x sub c_dyF mul add def /g*dyF t0x g*dyM t0x sub c_dyF mul add def /b*dyF t0x b*dyM t0x sub c_dyF mul add def /L*Xioa L*Nioa t0x L*Wioa L*Nioa sub mul add def /LAB*LdyF L*Xioa LAB*LdyM L*Xioa sub c_dyF mul add def /LAB*adyF 0 LAB*adyM 0 sub c_dyF mul add def /LAB*bdyF 0 LAB*bdyM 0 sub c_dyF mul add def } ifelse %c_dyF=1,#1 } ifelse %grey or color %only for control, not used: calculation of hsiM /hsiM r*dyM 030 sin mul g*dyM 150 sin mul add b*dyM 270 sin mul add %y_d r*dyM 030 cos mul g*dyM 150 cos mul add %x_d 0.0001 add atan def hsiM hab*ds362Mi 0 get sub 0 le {/hsiM hsiM 360 add def} if /hsiMm30 hsiM 30 sub def %only for control, not used: calculation of ict*dyM and ict*dyF %calculation of i*dyM, c*dyM, and t*dyM /maxd r*dyM def g*dyM maxd gt {/maxd g*dyM def} if b*dyM maxd gt {/maxd b*dyM def} if /mind r*dyM def g*dyM mind lt {/mind g*dyM def} if b*dyM mind lt {/mind b*dyM def} if /i*dyM maxd def /c*dyM maxd mind sub def /t*dyM i*dyM c*dyM 0.5 mul sub def %%only for control, not used: calculation of i*dyF, c*dyF, and t*dyF /maxd r*dyF def g*dyF maxd gt {/maxd g*dyF def} if b*dyF maxd gt {/maxd b*dyF def} if /mind r*dyF def g*dyF mind lt {/mind g*dyF def} if b*dyF mind lt {/mind b*dyF def} if /i*dyF maxd def /c*dyF maxd mind sub def /t*dyF i*dyF c*dyF 0.5 mul sub def colorm 0 eq {%colorm=0 r*dyF g*dyF b*dyF }%colorm=0 {%colorm=1 LAB*LdyF LAB*adyF LAB*bdyF Lab2RGBinterpolation /b'*dyF exch def /g'*dyF exch def /r'*dyF exch def r'*dyF g'*dyF b'*dyF } ifelse %colorm=1 FF_LM_setrgbcolor_F } bind def %END FF_LM_de_setrgbcolor_F /FF_LM_xchart_gamma_F {/xchart where {pop /xchartN xchart 8 idiv def /xchartP xchart xchart 8 idiv 8 mul sub def} {/xchartN 2.0 def %default /xchartP 0.5 def} ifelse /gamma_F 2.4 xchartP 0.18 mul sub 2.4 div 1 2.4 xchartN 0.18 mul sub 2.4 div div mul def gamma_F exp } def /FF_LM_setrgbcolor_F {%FF_LM_setrgbcolor_F /FF_LM_b0L exch def /FF_LM_g0L exch def /FF_LM_r0L exch def FF_LM_r0L 0 le {/FF_LM_r0L 0.0001 def} if FF_LM_g0L 0 le {/FF_LM_g0L 0.0001 def} if FF_LM_b0L 0 le {/FF_LM_b0L 0.0001 def} if /FF_LM_r1F FF_LM_r0L FF_LM_xchart_gamma_F def /FF_LM_g1F FF_LM_g0L FF_LM_xchart_gamma_F def /FF_LM_b1F FF_LM_b0L FF_LM_xchart_gamma_F def FF_LM_r1F FF_LM_g1F FF_LM_b1F FF_LM_setrgbcolor_F0 } def %FF_LM_setrgbcolor_F /FF_LM_transfer_F {{FF_LM_xchart_gamma_F} FF_LM_transfer_F0} def /FF_LM_colortransfer_F {{FF_LM_xchart_gamma_F} {FF_LM_xchart_gamma_F} {FF_LM_xchart_gamma_F} FF_LM_colortransfer_F0} def } def %END procedure setcolortrans_F %******************************************************************* /Colordata_sRGB_F {%BEG procedure Colordata_sRGB_F /Xrx089 729 array def /Yrx089 729 array def /Zrx089 729 array def /Xrx100 729 array def /Yrx100 729 array def /Zrx100 729 array def /R0 729 array def /G0 729 array def /B0 729 array def %/RGB0_to_XYZj_F { %BEG procedure RGB0_to_XYZj_F %transfers standard sRGB data (IEC 61966-2-1) to XYZ data for 9x9x9=729 colours %normalized XYZ data with Y=88.59 for display white, compare ISO 9241-306:2008. %requires /(XYZ)rx089 729 array def % /(XYZ)rx100 729 array def %requires in addition /RGB0_F 1080 array def %/Xrx089 729 array def %/Yrx089 729 array def %/Zrx089 729 array def %/Xrx100 729 array def %/Yrx100 729 array def %/Zrx100 729 array def %/R0 729 array def %/G0 729 array def %/B0 729 array def %row no.1 and 2: 9xrgb /imax 08 def /jmax 08 def /kmax 08 def 0 1 kmax {/k exch def %beg k=0,08 0 1 jmax {/j exch def %beg j=0,jmax 0 1 imax {/i exch def %beg i=0,imax /n i j 9 mul add k 81 mul add def R0 n k kmax div 1000 mul put G0 n j jmax div 1000 mul put B0 n i imax div 1000 mul put } for %end i=0,jmax } for %end j=0,jmax } for %end k=0,kmax /IM0 729 def /IM1 IM0 1 sub def 0 1 IM1 {/i exch def %i=0,IM1 R0 i get 0.04045 le %equations of IEC 61966-2-1:2003 {/RsRGB R0 i get 12.92 div def} {/RsRGB R0 i get 0.001 mul 0.055 add 1.055 div 2.4 exp def} ifelse G0 i get 0.04045 le {/GsRGB G0 i get 12.92 div def} {/GsRGB G0 i get 0.001 mul 0.055 add 1.055 div 2.4 exp def} ifelse B0 i get 0.04045 le {/BsRGB B0 i get 12.92 div def} {/BsRGB B0 i get 0.001 mul 0.055 add 1.055 div 2.4 exp def} ifelse Xrx100 i 0.4124 RsRGB mul 0.3576 GsRGB mul add 0.1805 BsRGB mul add 100 mul put Yrx100 i 0.2126 RsRGB mul 0.7152 GsRGB mul add 0.0722 BsRGB mul add 100 mul put Zrx100 i 0.0193 RsRGB mul 0.1192 GsRGB mul add 0.9505 BsRGB mul add 100 mul put } for %i=0,IM1 0 1 IM1 {/i exch def %i=0,IM1 Xrx089 i Xrx100 i get 0.8859 mul put Yrx089 i Yrx100 i get 0.8859 mul put Zrx089 i Zrx100 i get 0.8859 mul put } for %i=0,IM1 /iN 0 def /iW 728 def /XLN100 Xrx100 iN get def /YLN100 Yrx100 iN get def /ZLN100 Zrx100 iN get def /XLW100 Xrx100 iW get def /YLW100 Yrx100 iW get def /ZLW100 Zrx100 iW get def /XLN089 Xrx089 iN get def /YLN089 Yrx089 iN get def /ZLN089 Zrx089 iN get def /XLW089 Xrx089 iW get def /YLW089 Yrx089 iW get def /ZLW089 Zrx089 iW get def % achromatic (D65) colours /XLWD65100 95.04 def /YLWD65100 100.00 def /ZLWD65100 108.88 def /XLWD65089 95.04 0.8859 mul def /YLWD65089 100.00 0.8859 mul def /ZLWD65089 108.88 0.8859 mul def /XLN001 XLWD65100 100 div def /YLN001 YLWD65100 100 div def /ZLN001 ZLWD65100 100 div def %} bind def %END procedure RGB0_to_XYZj_F %/xchartj_XYZj_FAB729a_F { %BEG Procedure xchartj_FAB729a_F %transfer from XYZj data to LAB729a CIELAB data for 9x9x9=729 colours %requires 0<= xchartj <=10 (11 luminance reflections) %requires /(XYZ)x089 3240 array def (x=rc,ra,na,la) %requires /(Lab)x089 3240 array def (x=rc,ra,na,la) %requires /x729 729 array def (x=X,Y,Z) %not adapted %requires /x729 729 array def (x=L,a,b) %not adapted %requires /x729a 729 array def (x=L,a,b) %adapted /Lrc089 729 array def /arc089 729 array def /brc089 729 array def /Xrc089 729 array def /Yrc089 729 array def /Zrc089 729 array def /Lra089 729 array def /ara089 729 array def /bra089 729 array def /Xra089 729 array def /Yra089 729 array def /Zra089 729 array def /Lna089 729 array def /ana089 729 array def /bna089 729 array def /Xna089 729 array def /Yna089 729 array def /Zna089 729 array def /Lla089 729 array def /ala089 729 array def /bla089 729 array def /Xla089 729 array def /Yla089 729 array def /Zla089 729 array def /Xj 729 array def /Yj 729 array def /Zj 729 array def /LAB*Lj 729 array def %not adapted /LAB*aj 729 array def /LAB*bj 729 array def /LAB*Lja 729 array def %adapted /LAB*aja 729 array def /LAB*bja 729 array def /DecodeXYZ* {dup 6 29 div ge {dup dup mul mul} {4 29 div sub 108 841 div mul} ifelse} bind def /XD65W 95.04 def /YD65W 100.00 def /ZD65W 108.88 def /XD50W 96.42 def /YD50W 100.00 def /ZD50W 82.51 def /DAKTE [(D65) (D50)] def /ilf 8 array def /ilf [0.00 0.25 0.50 1.00 2.00 4.00 8.00 16.00] def /Lrefl 11 array def /Lrefl [(0%) (0%) (0%) (0%) (0,6%) (1,2%) (2,5%) (5%) (10%) (20%) (40%)] def xchartj 2 le {/il 0 def} {/il xchartj 3 sub def} ifelse %Reference black and factors /YrN 2.52 def /Xtref089 YrN ilf il get mul XLN001 mul def /Ytref089 YrN ilf il get mul def /Ztref089 YrN ilf il get mul ZLN001 mul def /YNil Ytref089 def /YNil001 YNil 100 div def YNil001 6 29 div 3 exp ge {/FYYn YNil001 0.3333 exp def} {/FYYn 841 108 div YNil001 mul 4 29 div add def} ifelse /L*Nil 116 FYYn mul 16 sub def /IM1 728 def 0 1 IM1 {/i exch def %i=0,IM1 Xrc089 i Xrx089 i get put Yrc089 i Yrx089 i get put Zrc089 i Zrx089 i get put /XQ Xrc089 i get XLWD65100 div def /YQ Yrc089 i get YLWD65100 div def /ZQ Zrc089 i get ZLWD65100 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 Lrc089 i YQ 0.008856 lt {903.3 YQ mul} {YQ 0.33333333 exp 116 mul 16 sub} ifelse put arc089 i 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 brc089 i 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,IM1 /L*N Lrc089 0 get def /A*N arc089 0 get def /B*N brc089 0 get def /L*W Lrc089 728 get def /A*W arc089 728 get def /B*W brc089 728 get def 0 1 IM1 {/i exch def %i=0,IM1 Lra089 i Lrc089 i get put /l*CIE Lrc089 i get L*N sub L*W L*N sub div def %system rel. lightn. /a*s A*W A*N sub l*CIE mul def /b*s B*W B*N sub l*CIE mul def ara089 i arc089 i get A*N sub a*s sub put bra089 i brc089 i get B*N sub b*s sub put } for %i=0,IM1 0 1 IM1 {/i exch def %i=0,IM1 /X* {Lra089 i get 16 add 116 div ara089 i get 500 div add} bind def /Y* {Lra089 i get 16 add 116 div} bind def /Z* {Lra089 i get 16 add 116 div bra089 i get 200 div sub} bind def Xra089 i X* DecodeXYZ* XLWD65100 mul put Yra089 i Y* DecodeXYZ* YLWD65100 mul put Zra089 i Z* DecodeXYZ* ZLWD65100 mul put } for %i=0,IM1 xchartj 2 ge {%xchartj>=2 %for white X data /Xwref089 Xra089 728 get def /Ywref089 Yra089 728 get def /Zwref089 Zra089 728 get def %for black X data /YrN Yra089 0 get def /Xnref089 YrN XLN001 mul def /Ynref089 YrN def /Znref089 YrN ZLN001 mul def /IM1 728 def 0 1 IM1 {/i exch def %i=1,IM1 Xna089 i Xra089 i get Xnref089 sub Xwref089 Xwref089 Xnref089 sub div mul put Yna089 i Yra089 i get Ynref089 sub Ywref089 Ywref089 Ynref089 sub div mul put Zna089 i Zra089 i get Znref089 sub Zwref089 Zwref089 Znref089 sub div mul put } for %i=1,IM1 0 1 IM1 {/i exch def %i=1,IM1 /XQ Xna089 i get XLWD65100 div def /YQ Yna089 i get YLWD65100 div def /ZQ Zna089 i get ZLWD65100 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 Lna089 i YQ 0.008856 lt {903.3 YQ mul} {YQ 0.33333333 exp 116 mul 16 sub} ifelse put ana089 i 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 bna089 i 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=1,IM1 } if %xchart>=2 xchartj 3 ge {%xchart>=3 %for white X data /Xwref089 Xra089 728 get def /Ywref089 Yra089 728 get def /Zwref089 Zra089 728 get def /kn Ywref089 Ywref089 Ytref089 sub div def 0 1 IM1 {/i exch def %i=1,IM1 Xla089 i Xna089 i get kn div Xtref089 add put Yla089 i Yna089 i get kn div Ytref089 add put Zla089 i Zna089 i get kn div Ztref089 add put } for %i=1,IM1 0 1 IM1 {/i exch def %i=1,IM1 /XQ Xla089 i get XLWD65100 div def /YQ Yla089 i get YLWD65100 div def /ZQ Zla089 i get ZLWD65100 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 Lla089 i YQ 0.008856 lt {903.3 YQ mul} {YQ 0.33333333 exp 116 mul 16 sub} ifelse put ala089 i 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 bla089 i 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=1,IM1 } if %xchart>=3 xchartj 0 eq {%xchartj=0 (1x) 0 1 IM1 {/i exch def %i=0,IM1 LAB*Lj i Lrc089 i get put LAB*aj i arc089 i get put LAB*bj i brc089 i get put Xj i Xrc089 i get put Yj i Yrc089 i get put Zj i Zrc089 i get put } for %i=0,IM1 } if %xchartj=0 (1x) xchartj 1 eq {%xchartj=1 (1x) 0 1 IM1 {/i exch def %i=0,IM1 LAB*Lj i Lra089 i get put LAB*aj i ara089 i get put LAB*bj i bra089 i get put Xj i Xra089 i get put Yj i Yra089 i get put Zj i Zra089 i get put } for %i=0,IM1 } if %xchartj=1 (1x) xchartj 2 eq {%xchartj=2 (1x) 0 1 IM1 {/i exch def %i=0,IM1 LAB*Lj i Lna089 i get put LAB*aj i ana089 i get put LAB*bj i bna089 i get put Xj i Xna089 i get put Yj i Yna089 i get put Zj i Zna089 i get put } for %i=0,IM1 } if %xchartj=2 (1x) xchartj 3 ge {%xchartj=3,4,5,6,7,8,9,10 (8x) 0 1 728 {/i exch def %i=0,IM1 LAB*Lj i Lla089 i get put LAB*aj i ala089 i get put LAB*bj i bla089 i get put Xj i Xla089 i get put Yj i Yla089 i get put Zj i Zla089 i get put } for %i=0,IM1 } if %xchartj=3,4,5,6,7,8,9,10 (8x) %Adaptation /L*Nio LAB*Lj 000 get def /A*Nio LAB*aj 000 get def /B*Nio LAB*bj 000 get def /L*Wio LAB*Lj 728 get def /A*Wio LAB*aj 728 get def /B*Wio LAB*bj 728 get def /A*Dio A*Wio A*Nio sub def /B*Dio B*Wio B*Nio sub def 0 1 728 {/j exch def %j=0,728 LAB*Lja j LAB*Lj j get put /l*CIE LAB*Lj j get L*Nio sub L*Wio L*Nio sub div def %system rel. lightn. /a*s A*Wio A*Nio sub l*CIE mul def /b*s B*Wio B*Nio sub l*CIE mul def LAB*aja j LAB*aj j get A*Nio sub a*s sub put LAB*bja j LAB*bj j get B*Nio sub b*s sub put } for %j=0,728 /L*Nioa LAB*Lja 0 get def /A*Nioa LAB*aja 0 get def /B*Nioa LAB*bja 0 get def /L*Wioa LAB*Lja 728 get def /A*Wioa LAB*aja 728 get def /B*Wioa LAB*bja 728 get def /nR 9 def %lut size /nG 9 def /nB 9 def /nges nR nG nB mul mul def /lut 2187 array def %729x3=2187 (only 9x9x9 used) 0 1 728 {/i exch def %i=0,728 /i3 i 3 mul def lut i3 LAB*Lja i get put lut i3 1 add LAB*aja i get put lut i3 2 add LAB*bja i get put } for %i=0,729 %} bind def %END xchartj_XYZj_FAB729a_F } bind def %END procedure Colordata_sRGB_F %***************************************************************************** %BEG Procedure PROC_SPEC_IOF Colour special for NP-file 20120401 %***************************************************************************** %different procedures: % proc_LAB729a_to_LAB*LabCh64M and proc_LAB*LabCh64M_to_tab362_dy %*********************************************************** /proc_LAB729a_to_LAB*LabCh64M { %BEG Procedure proc_LAB729a_to_LAB*LabCh64M %transfer from proc_LAB729a_to_LAB*LabCh64M, %9x9x9=729 steps used for LAB729a %requires /LAB*LabCh64M 64 array def %requires in addition /LAB729a 729 array def /LAB*Ldd64M 64 array def /LAB*add64M 64 array def /LAB*bdd64M 64 array def /LAB*Cdd64M 64 array def /LAB*hdd64M 64 array def /hab*dd64M 64 array def /M1jx 49 array def 0 1 5 {/xtonj exch def %xtonj=0,5 0 1 7 {/j exch def %j=0,7 /ja xtonj 8 mul j add def xtonj 0 eq {/jx 648 j 09 mul add def} if %see O00Y-O83Y, -0 xtonj 1 eq {/jx 720 j 81 mul sub def} if %see Y00L-Y83L, -81 xtonj 2 eq {/jx 072 j add def} if %see L00C-L83C, +01 xtonj 3 eq {/jx 080 j 09 mul sub def} if %see C00V-C83V, -09 xtonj 4 eq {/jx 008 j 81 mul add def} if %see V00M-V83M, -81 xtonj 5 eq {/jx 656 j sub def} if %see M00O-M83O, +01 LAB*Ldd64M ja LAB*Lja jx get put LAB*add64M ja LAB*aja jx get put LAB*bdd64M ja LAB*bja jx get put LAB*Cdd64M ja LAB*add64M ja get dup mul LAB*bdd64M ja get dup mul add sqrt put LAB*hdd64M ja LAB*bdd64M ja get LAB*add64M ja get 0.0001 add atan put xtonj 5 eq LAB*hdd64M ja get 90 le and {LAB*hdd64M ja LAB*hdd64M ja get 360 add put} if M1jx ja jx put } for %j=0,7 } for %xtonj=0,5 M1jx 48 M1jx 0 get put 0 1 15 {/i exch def %i=0,15 LAB*Ldd64M 48 i add LAB*Ldd64M i get put LAB*add64M 48 i add LAB*add64M i get put LAB*bdd64M 48 i add LAB*bdd64M i get put LAB*Cdd64M 48 i add LAB*Cdd64M i get put LAB*hdd64M 48 i add LAB*hdd64M i get 360 add put } for %i=1,15 0 1 63 {/i exch def %i=0,63 hab*dd64M i LAB*hdd64M i get put } for %i=0,63 %data test according to increasing hue angle and appropriate correction /xtesthuea -1 def /xtesthuei 64 array def 0 1 48 {/i exch def %i=0,49 hab*dd64M i get hab*dd64M i 1 add get gt {/xtesthuea xtesthuea 1 add def xtesthuei xtesthuea i put hab*dd64M i 1 add hab*dd64M i get put LAB*Ldd64M i 1 add LAB*Ldd64M i get put LAB*add64M i 1 add LAB*add64M i get put LAB*bdd64M i 1 add LAB*bdd64M i get put LAB*Cdd64M i 1 add LAB*Cdd64M i get put LAB*hdd64M i 1 add LAB*hdd64M i get put } if } for %i=0,49 } bind def %END proc_LAB729a_to_LAB*LabCh64M %*********************************************************** /proc_LAB*LabCh64M_to_tab362_dy { %BEG procedure proc_LAB*LabCh64M_to_tab362_dy /LAB*e 40 array def %8x5=40 LabCh* /LAB*e [39.92 58.74 27.99 0.0 0.0 %0 00_04 R CIE No.09 elementary in LAB 81.26 -2.89 71.56 0.0 0.0 %1 05_09 J CIE No.10 52.23 -42.42 13.60 0.0 0.0 %2 10_14 G CIE No.11 0.0 0.0 0.0 0.0 0.0 %3 15_19 Cgb to be calculated 30.57 1.41 -46.47 0.0 0.0 %4 20_24 B CIE No.12 0.0 0.0 0.0 0.0 0.0 %5 25_29 Mbr to be calculated 39.92 58.74 27.99 0.0 0.0 %6 30_34 Re+360 to be calculated 81.26 -2.89 71.56 0.0 0.0 %7 35_39 Ye+360 to be calculated ] def %add no. 03_04 Re LAB*e 03 LAB*e 01 get dup mul LAB*e 02 get dup mul add sqrt put LAB*e 04 LAB*e 02 get LAB*e 01 get 0.0001 add atan put %add no. 08_09 Ye LAB*e 08 LAB*e 06 get dup mul LAB*e 07 get dup mul add sqrt put LAB*e 09 LAB*e 07 get LAB*e 06 get 0.0001 add atan put %add no. 13_14 Ge LAB*e 13 LAB*e 11 get dup mul LAB*e 12 get dup mul add sqrt put LAB*e 14 LAB*e 12 get LAB*e 11 get 0.0001 add atan put %add no. 23_24 Be LAB*e 23 LAB*e 21 get dup mul LAB*e 22 get dup mul add sqrt put LAB*e 24 LAB*e 22 get LAB*e 21 get 0.0001 add atan put %add no. 33_34 Re+360 LAB*e 33 LAB*e 31 get dup mul LAB*e 32 get dup mul add sqrt put LAB*e 34 LAB*e 32 get LAB*e 31 get 0.0001 add atan 360 add put %add no. 38_39 Ye+360 LAB*e 38 LAB*e 36 get dup mul LAB*e 37 get dup mul add sqrt put LAB*e 39 LAB*e 37 get LAB*e 36 get 0.0001 add atan 360 add put %new no. 15_19 Cgb with Ge_Be LAB*e 19 LAB*e 14 get LAB*e 24 get add 0.5 mul put %hab LAB*e 18 LAB*e 13 get LAB*e 23 get add 0.5 mul put %C*ab LAB*e 15 LAB*e 10 get LAB*e 20 get add 0.5 mul put %L* LAB*e 16 LAB*e 18 get LAB*e 19 get cos mul put %a* LAB*e 17 LAB*e 18 get LAB*e 19 get sin mul put %b* %new no. 25_29 Mbr with Be_Re+360 LAB*e 29 LAB*e 24 get LAB*e 34 get add 0.5 mul put %hab LAB*e 28 LAB*e 23 get LAB*e 33 get add 0.5 mul put %C*ab LAB*e 25 LAB*e 20 get LAB*e 00 get add 0.5 mul put %L* LAB*e 26 LAB*e 28 get LAB*e 29 get cos mul put %a* LAB*e 27 LAB*e 28 get LAB*e 29 get sin mul put %b* /LAB*He 8 array def 0 1 7 {/i exch def %i=0,7 LAB*He i LAB*e i 5 mul 4 add get put } for %i=0,7 /hab*de64M 50 array def 0 1 47 {/i exch def %i=0,47 /i8 i 8 idiv def /i8d i i8 8 mul sub def /dLAB*He LAB*He i8 1 add get LAB*He i8 get sub 8 div def hab*de64M i LAB*He i8 get dLAB*He i8d mul add put } for %i=0,47 hab*de64M 48 hab*de64M 0 get 360 add put hab*de64M 49 hab*de64M 1 get 360 add put /LAB*Hs 8 array def /LAB*Hs [30. 90. 150. 210. 270. 330. 390. 450.] def /hab*ds64M 50 array def 0 1 47 {/i exch def %i=0,47 /i8 i 8 idiv def /i8d i i8 8 mul sub def /dLAB*Hs LAB*Hs i8 1 add get LAB*Hs i8 get sub 8 div def hab*ds64M i LAB*Hs i8 get dLAB*Hs i8d mul add put } for %i=0,47 hab*ds64M 48 hab*ds64M 0 get 360 add put hab*ds64M 49 hab*ds64M 1 get 360 add put %***************** calculation of LAB*LabChd362Mi and rgb*dd362Mi %***************** for 362 elementary hue angles /LAB*Ldd362Mi 362 array def /LAB*add362Mi 362 array def /LAB*bdd362Mi 362 array def /LAB*Cdd362Mi 362 array def /LAB*hdd362Mi 362 array def /r*dd362Mi 362 array def /g*dd362Mi 362 array def /b*dd362Mi 362 array def %******default rgb-input data for output of device colours /r*dd64M 64 array def /r*dd64M [1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %R 1.000 0.875 0.750 0.625 0.500 0.375 0.250 0.125 %J 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %G 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %C 0.000 0.125 0.250 0.375 0.500 0.625 0.750 0.875 %B 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %M 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %R 1.000 0.875 0.750 0.625 0.500 0.375 0.250 0.125 %J ] def /g*dd64M 64 array def /g*dd64M [0.000 0.125 0.250 0.375 0.500 0.625 0.750 0.875 %R 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %J 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %G 1.000 0.875 0.750 0.625 0.500 0.375 0.250 0.125 %C 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %B 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %M 0.000 0.125 0.250 0.375 0.500 0.625 0.750 0.875 %R 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %J ] def /b*dd64M 64 array def /b*dd64M [0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %R 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %J 0.000 0.125 0.250 0.375 0.500 0.625 0.750 0.875 %G 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %C 1.000 1.000 1.000 1.000 1.000 1.000 1.000 1.000 %B 1.000 0.875 0.750 0.625 0.500 0.375 0.250 0.125 %M 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %R 0.000 0.000 0.000 0.000 0.000 0.000 0.000 0.000 %J ] def %calculate all data of 16+1=17 step elementary colour circle /ind64M 17 array def /ind64M %R00Y R25Y R50Y R75Y Y00G Y25G Y50G Y75G [0 2 4 6 8 10 12 14 %G00B G25B G50B G75G B00R B25R B50R B75R R00Y 16 20 24 28 32 36 40 44 0 ] def %actual 16 step device circle + N + W /r*dd18M 18 array def /g*dd18M 18 array def /b*dd18M 18 array def 0 1 15 {/i exch def %i=0,15 /indi ind64M i get def r*dd18M i r*dd64M indi get put %16 device colours g*dd18M i g*dd64M indi get put b*dd18M i b*dd64M indi get put } for %i=0,15 r*dd18M 16 0 put %N g*dd18M 16 0 put b*dd18M 16 0 put r*dd18M 17 1 put %W g*dd18M 17 1 put b*dd18M 17 1 put %actual 6 step device circle + N + W /r*dd08M 08 array def /g*dd08M 08 array def /b*dd08M 08 array def 0 1 5 {/i exch def %i=0,5 r*dd08M i r*dd64M i 8 mul get put %6 device colours g*dd08M i g*dd64M i 8 mul get put b*dd08M i b*dd64M i 8 mul get put } for %i=0,5 r*dd08M 6 0 put %N g*dd08M 6 0 put b*dd08M 6 0 put r*dd08M 7 1 put %W g*dd08M 7 1 put b*dd08M 7 1 put 0 1 361 {/i exch def %i=0,361 %default only for test r*dd362Mi i 0 put %of irregularities g*dd362Mi i 0 put b*dd362Mi i 0 put LAB*Ldd362Mi i 0.0001 put LAB*add362Mi i 0 put LAB*bdd362Mi i 0 put LAB*Cdd362Mi i 0 put LAB*hdd362Mi i 0 put } for %i=0,361 % s-data 030,0 -> LAB*hdd64M 0 get -> LAB*Ldd362Mi 30,0 put: LAB*hdd362Mi=40 % s-data 037,5 -> LAB*hdd64M 1 get -> LAB*Ldd362Mi 37,5 put: LAB*hdd362Mi=41,3 % s-data 045,0 -> LAB*hdd64M 2 get -> LAB*Ldd362Mi 45,0 put: LAB*hdd362Mi=44,6 % s-data 052,5 -> LAB*hdd64M 3 get -> LAB*Ldd362Mi 52,5 put: LAB*hdd362Mi=50,7 %... % s-data 090,0 -> LAB*hdd64M 8 get -> LAB*Ldd362Mi 90,0 put: LAB*hdd362Mi=102,8 % s-data 330,0 -> LAB*hdd64M 41 get -> LAB*Ldd362Mi 330,0 put: LAB*hdd362Mi=328 % s-data 337,5 -> LAB*hdd64M 42 get -> LAB*Ldd362Mi 337,5 put: LAB*hdd362Mi=334 % s-data 345,0 -> LAB*hdd64M 43 get -> LAB*Ldd362Mi 345,0 put: LAB*hdd362Mi=341 % s-data 352,5 -> LAB*hdd64M 44 get -> LAB*Ldd362Mi 352,5 put: LAB*hdd362Mi=351 % s-data 360,0 -> LAB*hdd64M 45 get -> LAB*Ldd362Mi 360,0 put: LAB*hdd362Mi=352 %... % s-data 390,0 -> LAB*hdd64M 49 get -> LAB*Ldd362Mi 390,0 put: LAB*hdd362Mi=400 0 15 345 {/i exch def %i=0,15,345 /ix00 i 15 idiv 2 mul def /ix01 ix00 1 add def /ix02 ix00 2 add def 0 1 14 {/j exch def %j=0,14 j 07 le {%j<=7 /XIE j 7.5 div def /i0 i j add def /ix0 ix00 def /ix1 ix01 def }%j<=7 {%j>7 /XIE j 8 sub 0.5 add 7.5 div def /i0 i j add def /ix0 ix01 def /ix1 ix02 def } ifelse %j>7 LAB*Ldd362Mi i0 LAB*Ldd64M ix0 get LAB*Ldd64M ix1 get LAB*Ldd64M ix0 get sub XIE mul add put LAB*Cdd362Mi i0 LAB*Cdd64M ix0 get LAB*Cdd64M ix1 get LAB*Cdd64M ix0 get sub XIE mul add put LAB*hdd362Mi i0 LAB*hdd64M ix0 get LAB*hdd64M ix1 get LAB*hdd64M ix0 get sub XIE mul add dup 90 gt i0 45 le and {360 sub} if put LAB*add362Mi i0 LAB*Cdd362Mi i0 get LAB*hdd362Mi i0 get cos mul put LAB*bdd362Mi i0 LAB*Cdd362Mi i0 get LAB*hdd362Mi i0 get sin mul put r*dd362Mi i0 r*dd64M ix0 get r*dd64M ix1 get r*dd64M ix0 get sub XIE mul add put g*dd362Mi i0 g*dd64M ix0 get g*dd64M ix1 get g*dd64M ix0 get sub XIE mul add put b*dd362Mi i0 b*dd64M ix0 get b*dd64M ix1 get b*dd64M ix0 get sub XIE mul add put } for %j=0,14 } for %i0=0,15,345 0 1 1 {/i exch def %i=0,1 LAB*Ldd362Mi 360 i add LAB*Ldd362Mi i get put LAB*add362Mi 360 i add LAB*add362Mi i get put LAB*bdd362Mi 360 i add LAB*bdd362Mi i get put LAB*Cdd362Mi 360 i add LAB*Cdd362Mi i get put LAB*hdd362Mi 360 i add LAB*hdd362Mi i get 360 add put r*dd362Mi 360 i add r*dd362Mi i get put g*dd362Mi 360 i add g*dd362Mi i get put b*dd362Mi 360 i add b*dd362Mi i get put } for %i=0,1 /hab*dd362Fi 362 array def 0 1 361 {/i exch def %i=0,361 hab*dd362Fi i LAB*hdd362Mi i get put %floating point F } for %i=0,361 %***************** calculation of hab*ds362Mi %integer %***************** for 362 standard hue angles /hab*ds362Mi 362 array def 0 1 361 {/i exch def %i=0,361 %range 30..391 hab*ds362Mi i 30 i add put %always integer } for %i=0,361 %***************** calculation of LAB*LabChs362Mi and rgb*ds362Mi %***************** for 362 device hue angles /LAB*Lds362Mi 362 array def /LAB*ads362Mi 362 array def /LAB*bds362Mi 362 array def /LAB*Cds362Mi 362 array def /LAB*hds362Mi 362 array def /r*ds362Mi 362 array def /g*ds362Mi 362 array def /b*ds362Mi 362 array def 0 1 361 {/i exch def %i=0,361 %default only for test r*ds362Mi i 0 put %of irregularities g*ds362Mi i 0 put b*ds362Mi i 0 put LAB*Lds362Mi i 0.0001 put LAB*ads362Mi i 0 put LAB*bds362Mi i 0 put LAB*Cds362Mi i 0 put LAB*hds362Mi i 0 put } for %i=0,361 0 1 359 {/i0 exch def %i=0,359 /i0i hab*ds362Mi i0 get def %integer range 30...390 i0i hab*dd362Fi 0 get lt {/i0i i0i 360 add def} if 0 1 47 {/ix0 exch def %ix0=0,48 /ix1 ix0 1 add def i0i LAB*hdd64M ix0 get sub 0 ge i0i LAB*hdd64M ix1 get sub 0 lt and {%ge..lt /XIE i0i LAB*hdd64M ix0 get sub LAB*hdd64M ix1 get LAB*hdd64M ix0 get sub div def LAB*Lds362Mi i0 LAB*Ldd64M ix0 get LAB*Ldd64M ix1 get LAB*Ldd64M ix0 get sub XIE mul add put LAB*Cds362Mi i0 LAB*Cdd64M ix0 get LAB*Cdd64M ix1 get LAB*Cdd64M ix0 get sub XIE mul add put LAB*hds362Mi i0 LAB*hdd64M ix0 get LAB*hdd64M ix1 get LAB*hdd64M ix0 get sub XIE mul add dup 90 gt i0 45 le and {360 sub} if put LAB*ads362Mi i0 LAB*Cds362Mi i0 get LAB*hds362Mi i0 get cos mul put LAB*bds362Mi i0 LAB*Cds362Mi i0 get LAB*hds362Mi i0 get sin mul put r*ds362Mi i0 r*dd64M ix0 get r*dd64M ix1 get r*dd64M ix0 get sub XIE mul add put g*ds362Mi i0 g*dd64M ix0 get g*dd64M ix1 get g*dd64M ix0 get sub XIE mul add put b*ds362Mi i0 b*dd64M ix0 get b*dd64M ix1 get b*dd64M ix0 get sub XIE mul add put exit } if %ge..lt } for %ix0=0,47 } for %i=0,359 0 1 1 {/i exch def %i=0,1 LAB*Lds362Mi 360 i add LAB*Lds362Mi i get put LAB*ads362Mi 360 i add LAB*ads362Mi i get put LAB*bds362Mi 360 i add LAB*bds362Mi i get put LAB*Cds362Mi 360 i add LAB*Cds362Mi i get put LAB*hds362Mi 360 i add LAB*hds362Mi i get 360 add put r*ds362Mi 360 i add r*ds362Mi i get put g*ds362Mi 360 i add g*ds362Mi i get put b*ds362Mi 360 i add b*ds362Mi i get put } for %i=0,1 %***************** calculation of hab*de362Fi %***************** for 362 elementary hue angles /hab*de362Fi 362 array def %floating point %range 26..386 30 1 389 {/i exch def %i=30,389 /im30 i 30 sub def /hab*sM i def %alphas = [habs - LAB*Hs(h)]/[LAB*Hs(n+1) - LAB*Hs(n)] % = [habs - LAB*Hs(h)]/60 %habe = LAB*He(n) + alphas [LAB*He(n+1) - LAB*He(n)] %use of LAB*He 0..7 Re_to_Ye i 030 ge i 089 le and {/ipan0 0 def /ipan1 1 def} if i 090 ge i 149 le and {/ipan0 1 def /ipan1 2 def} if i 150 ge i 209 le and {/ipan0 2 def /ipan1 3 def} if i 210 ge i 269 le and {/ipan0 3 def /ipan1 4 def} if i 270 ge i 329 le and {/ipan0 4 def /ipan1 5 def} if i 330 ge i 359 le and {/ipan0 5 def /ipan1 6 def} if i 360 ge i 389 le and {/ipan0 6 def /ipan1 7 def} if /alphas {hab*sM LAB*Hs ipan0 get sub 60 div} bind def /habe {LAB*He ipan0 get LAB*He ipan1 get LAB*He ipan0 get sub alphas mul add} bind def hab*de362Fi im30 habe put %floating point } for %i=30,389 hab*de362Fi 360 hab*de362Fi 0 get 360 add put hab*de362Fi 361 hab*de362Fi 1 get 360 add put %***************** calculation LAB*LabChe32Mi and rgb*de362Mi %***************** for 362 elementary hue angles /LAB*Lde362Mi 362 array def /LAB*ade362Mi 362 array def /LAB*bde362Mi 362 array def /LAB*Cde362Mi 362 array def /LAB*hde362Mi 362 array def /r*de362Mi 362 array def /g*de362Mi 362 array def /b*de362Mi 362 array def 0 1 361 {/i exch def %i=0,361 %default only for test r*de362Mi i 0 put %of irregularities g*de362Mi i 0 put b*de362Mi i 0 put LAB*Lde362Mi i 0.0001 put LAB*ade362Mi i 0 put LAB*bde362Mi i 0 put LAB*Cde362Mi i 0 put LAB*hde362Mi i 0 put } for %i=0,361 0 1 359 {/i0 exch def %i=0,359 /i0i hab*de362Fi i0 get def %range 26...386 i0i hab*dd362Fi 0 get lt {/i0i i0i 360 add def} if 0 1 47 {/ix0 exch def %ix0=0,48 /ix1 ix0 1 add def i0i LAB*hdd64M ix0 get sub 0 ge i0i LAB*hdd64M ix1 get sub 0 lt and {%ge..lt /XIE i0i LAB*hdd64M ix0 get sub LAB*hdd64M ix1 get LAB*hdd64M ix0 get sub div def LAB*Lde362Mi i0 LAB*Ldd64M ix0 get LAB*Ldd64M ix1 get LAB*Ldd64M ix0 get sub XIE mul add put LAB*Cde362Mi i0 LAB*Cdd64M ix0 get LAB*Cdd64M ix1 get LAB*Cdd64M ix0 get sub XIE mul add put LAB*hde362Mi i0 LAB*hdd64M ix0 get LAB*hdd64M ix1 get LAB*hdd64M ix0 get sub XIE mul add dup 90 gt i0 45 le and {360 sub} if put LAB*ade362Mi i0 LAB*Cde362Mi i0 get LAB*hde362Mi i0 get cos mul put LAB*bde362Mi i0 LAB*Cde362Mi i0 get LAB*hde362Mi i0 get sin mul put r*de362Mi i0 r*dd64M ix0 get r*dd64M ix1 get r*dd64M ix0 get sub XIE mul add put g*de362Mi i0 g*dd64M ix0 get g*dd64M ix1 get g*dd64M ix0 get sub XIE mul add put b*de362Mi i0 b*dd64M ix0 get b*dd64M ix1 get b*dd64M ix0 get sub XIE mul add put exit } if %ge..lt } for %ix0=0,47 } for %i=0,359 0 1 1 {/i exch def %i=0,1 LAB*Lde362Mi 360 i add LAB*Lde362Mi i get put LAB*ade362Mi 360 i add LAB*ade362Mi i get put LAB*bde362Mi 360 i add LAB*bde362Mi i get put LAB*Cde362Mi 360 i add LAB*Cde362Mi i get put LAB*hde362Mi 360 i add LAB*hde362Mi i get 360 add put r*de362Mi 360 i add r*de362Mi i get put g*de362Mi 360 i add g*de362Mi i get put b*de362Mi 360 i add b*de362Mi i get put } for %i=0,1 %special LAB* data calculation of 17 step colour circle %needs LAB*LabCh64M, hab*dd64M /ind64M 17 array def /ind64M %R00Y R25Y R50Y R75Y Y00G Y25G Y50G Y75G [0 2 4 6 8 10 12 14 %G00B G25B G50B G75G B00R B25R B50R B75R R00Y 16 20 24 28 32 36 40 44 0 ] def /LAB*Ldd18M 17 array def /LAB*add18M 17 array def /LAB*bdd18M 17 array def /LAB*Cdd18M 17 array def /LAB*hdd18M 17 array def /hab*dd18M 17 array def 0 1 16 {/i exch def %i=0,16 /indi ind64M i get def LAB*Ldd18M i LAB*Ldd64M indi get put LAB*add18M i LAB*add64M indi get put LAB*bdd18M i LAB*bdd64M indi get put LAB*Cdd18M i LAB*Cdd64M indi get put LAB*hdd18M i LAB*hdd64M indi get put hab*dd18M i hab*dd64M indi get put } for %i=0,16 } bind def %END proc_LAB*LabCh64M_to_tab362_dy %***************************************************************************** %END Procedure PROC_SPEC_IOF Colour special for NP-file 20120401 %***************************************************************************** /FileDaten (sRGB standard device; no separation, D65) def /FileDatde (sRGB Norm\255Ger\344t; keine Separation, D65) def /RGB0_F 3240 array def %1080*3 /RGB0_F [%1000 x rgb* nr. pos 1080 colours 0000 0000 0000 %0000 A01 0000 0000 0125 %0001 A02 0000 0000 0250 %0002 A03 0000 0000 0375 %0003 A04 0000 0000 0500 %0004 A05 0000 0000 0625 %0005 A06 0000 0000 0750 %0006 A07 0000 0000 0875 %0007 A08 0000 0000 1000 %0008 A09 0000 0125 0000 %0009 B01 0000 0125 0125 %0010 B02 0000 0125 0250 %0011 B03 0000 0125 0375 %0012 B04 0000 0125 0500 %0013 B05 0000 0125 0625 %0014 B06 0000 0125 0750 %0015 B07 0000 0125 0875 %0016 B08 0000 0125 1000 %0017 B09 0000 0250 0000 %0018 C01 0000 0250 0125 %0019 C02 0000 0250 0250 %0020 C03 0000 0250 0375 %0021 C04 0000 0250 0500 %0022 C05 0000 0250 0625 %0023 C06 0000 0250 0750 %0024 C07 0000 0250 0875 %0025 C08 0000 0250 1000 %0026 C09 0000 0375 0000 %0027 D01 0000 0375 0125 %0028 D02 0000 0375 0250 %0029 D03 0000 0375 0375 %0030 D04 0000 0375 0500 %0031 D05 0000 0375 0625 %0032 D06 0000 0375 0750 %0033 D07 0000 0375 0875 %0034 D08 0000 0375 1000 %0035 D09 0000 0500 0000 %0036 E01 0000 0500 0125 %0037 E02 0000 0500 0250 %0038 E03 0000 0500 0375 %0039 E04 0000 0500 0500 %0040 E05 0000 0500 0625 %0041 E06 0000 0500 0750 %0042 E07 0000 0500 0875 %0043 E08 0000 0500 1000 %0044 E09 0000 0625 0000 %0045 F01 0000 0625 0125 %0046 F02 0000 0625 0250 %0047 F03 0000 0625 0375 %0048 F04 0000 0625 0500 %0049 F05 0000 0625 0625 %0050 F06 0000 0625 0750 %0051 F07 0000 0625 0875 %0052 F08 0000 0625 1000 %0053 F09 0000 0750 0000 %0054 G01 0000 0750 0125 %0055 G02 0000 0750 0250 %0056 G03 0000 0750 0375 %0057 G04 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0625 0625 1000 %0458 X18 0625 0750 0000 %0459 Y10 0625 0750 0125 %0460 Y11 0625 0750 0250 %0461 Y12 0625 0750 0375 %0462 Y13 0625 0750 0500 %0463 Y14 0625 0750 0625 %0464 Y15 0625 0750 0750 %0465 Y16 0625 0750 0875 %0466 Y17 0625 0750 1000 %0467 Y18 0625 0875 0000 %0468 Z10 0625 0875 0125 %0469 Z11 0625 0875 0250 %0470 Z12 0625 0875 0375 %0471 Z13 0625 0875 0500 %0472 Z14 0625 0875 0625 %0473 Z15 0625 0875 0750 %0474 Z16 0625 0875 0875 %0475 Z17 0625 0875 1000 %0476 Z18 0625 1000 0000 %0477 a10 0625 1000 0125 %0478 a11 0625 1000 0250 %0479 a12 0625 1000 0375 %0480 a13 0625 1000 0500 %0481 a14 0625 1000 0625 %0482 a15 0625 1000 0750 %0483 a16 0625 1000 0875 %0484 a17 0625 1000 1000 %0485 a18 0750 0000 0000 %0486 A19 0750 0000 0125 %0487 A20 0750 0000 0250 %0488 A21 0750 0000 0375 %0489 A22 0750 0000 0500 %0490 A23 0750 0000 0625 %0491 A24 0750 0000 0750 %0492 A25 0750 0000 0875 %0493 A26 0750 0000 1000 %0494 A27 0750 0125 0000 %0495 B19 0750 0125 0125 %0496 B20 0750 0125 0250 %0497 B21 0750 0125 0375 %0498 B22 0750 0125 0500 %0499 B23 0750 0125 0625 %0500 B24 0750 0125 0750 %0501 B25 0750 0125 0875 %0502 B26 0750 0125 1000 %0503 B27 0750 0250 0000 %0504 C19 0750 0250 0125 %0505 C20 0750 0250 0250 %0506 C21 0750 0250 0375 %0507 C22 0750 0250 0500 %0508 C23 0750 0250 0625 %0509 C24 0750 0250 0750 %0510 C25 0750 0250 0875 %0511 C26 0750 0250 1000 %0512 C27 0750 0375 0000 %0513 D19 0750 0375 0125 %0514 D20 0750 0375 0250 %0515 D21 0750 0375 0375 %0516 D22 0750 0375 0500 %0517 D23 0750 0375 0625 %0518 D24 0750 0375 0750 %0519 D25 0750 0375 0875 %0520 D26 0750 0375 1000 %0521 D27 0750 0500 0000 %0522 E19 0750 0500 0125 %0523 E20 0750 0500 0250 %0524 E21 0750 0500 0375 %0525 E22 0750 0500 0500 %0526 E23 0750 0500 0625 %0527 E24 0750 0500 0750 %0528 E25 0750 0500 0875 %0529 E26 0750 0500 1000 %0530 E27 0750 0625 0000 %0531 F19 0750 0625 0125 %0532 F20 0750 0625 0250 %0533 F21 0750 0625 0375 %0534 F22 0750 0625 0500 %0535 F23 0750 0625 0625 %0536 F24 0750 0625 0750 %0537 F25 0750 0625 0875 %0538 F26 0750 0625 1000 %0539 F27 0750 0750 0000 %0540 G19 0750 0750 0125 %0541 G20 0750 0750 0250 %0542 G21 0750 0750 0375 %0543 G22 0750 0750 0500 %0544 G23 0750 0750 0625 %0545 G24 0750 0750 0750 %0546 G25 0750 0750 0875 %0547 G26 0750 0750 1000 %0548 G27 0750 0875 0000 %0549 H19 0750 0875 0125 %0550 H20 0750 0875 0250 %0551 H21 0750 0875 0375 %0552 H22 0750 0875 0500 %0553 H23 0750 0875 0625 %0554 H24 0750 0875 0750 %0555 H25 0750 0875 0875 %0556 H26 0750 0875 1000 %0557 H27 0750 1000 0000 %0558 I19 0750 1000 0125 %0559 I20 0750 1000 0250 %0560 I21 0750 1000 0375 %0561 I22 0750 1000 0500 %0562 I23 0750 1000 0625 %0563 I24 0750 1000 0750 %0564 I25 0750 1000 0875 %0565 I26 0750 1000 1000 %0566 I27 0875 0000 0000 %0567 J19 0875 0000 0125 %0568 J20 0875 0000 0250 %0569 J21 0875 0000 0375 %0570 J22 0875 0000 0500 %0571 J23 0875 0000 0625 %0572 J24 0875 0000 0750 %0573 J25 0875 0000 0875 %0574 J26 0875 0000 1000 %0575 J27 0875 0125 0000 %0576 K19 0875 0125 0125 %0577 K20 0875 0125 0250 %0578 K21 0875 0125 0375 %0579 K22 0875 0125 0500 %0580 K23 0875 0125 0625 %0581 K24 0875 0125 0750 %0582 K25 0875 0125 0875 %0583 K26 0875 0125 1000 %0584 K27 0875 0250 0000 %0585 L19 0875 0250 0125 %0586 L20 0875 0250 0250 %0587 L21 0875 0250 0375 %0588 L22 0875 0250 0500 %0589 L23 0875 0250 0625 %0590 L24 0875 0250 0750 %0591 L25 0875 0250 0875 %0592 L26 0875 0250 1000 %0593 L27 0875 0375 0000 %0594 M19 0875 0375 0125 %0595 M20 0875 0375 0250 %0596 M21 0875 0375 0375 %0597 M22 0875 0375 0500 %0598 M23 0875 0375 0625 %0599 M24 0875 0375 0750 %0600 M25 0875 0375 0875 %0601 M26 0875 0375 1000 %0602 M27 0875 0500 0000 %0603 N19 0875 0500 0125 %0604 N20 0875 0500 0250 %0605 N21 0875 0500 0375 %0606 N22 0875 0500 0500 %0607 N23 0875 0500 0625 %0608 N24 0875 0500 0750 %0609 N25 0875 0500 0875 %0610 N26 0875 0500 1000 %0611 N27 0875 0625 0000 %0612 O19 0875 0625 0125 %0613 O20 0875 0625 0250 %0614 O21 0875 0625 0375 %0615 O22 0875 0625 0500 %0616 O23 0875 0625 0625 %0617 O24 0875 0625 0750 %0618 O25 0875 0625 0875 %0619 O26 0875 0625 1000 %0620 O27 0875 0750 0000 %0621 P19 0875 0750 0125 %0622 P20 0875 0750 0250 %0623 P21 0875 0750 0375 %0624 P22 0875 0750 0500 %0625 P23 0875 0750 0625 %0626 P24 0875 0750 0750 %0627 P25 0875 0750 0875 %0628 P26 0875 0750 1000 %0629 P27 0875 0875 0000 %0630 Q19 0875 0875 0125 %0631 Q20 0875 0875 0250 %0632 Q21 0875 0875 0375 %0633 Q22 0875 0875 0500 %0634 Q23 0875 0875 0625 %0635 Q24 0875 0875 0750 %0636 Q25 0875 0875 0875 %0637 Q26 0875 0875 1000 %0638 Q27 0875 1000 0000 %0639 R19 0875 1000 0125 %0640 R20 0875 1000 0250 %0641 R21 0875 1000 0375 %0642 R22 0875 1000 0500 %0643 R23 0875 1000 0625 %0644 R24 0875 1000 0750 %0645 R25 0875 1000 0875 %0646 R26 0875 1000 1000 %0647 R27 1000 0000 0000 %0648 S19 1000 0000 0125 %0649 S20 1000 0000 0250 %0650 S21 1000 0000 0375 %0651 S22 1000 0000 0500 %0652 S23 1000 0000 0625 %0653 S24 1000 0000 0750 %0654 S25 1000 0000 0875 %0655 S26 1000 0000 1000 %0656 S27 1000 0125 0000 %0657 T19 1000 0125 0125 %0658 T20 1000 0125 0250 %0659 T21 1000 0125 0375 %0660 T22 1000 0125 0500 %0661 T23 1000 0125 0625 %0662 T24 1000 0125 0750 %0663 T25 1000 0125 0875 %0664 T26 1000 0125 1000 %0665 T27 1000 0250 0000 %0666 U19 1000 0250 0125 %0667 U20 1000 0250 0250 %0668 U21 1000 0250 0375 %0669 U22 1000 0250 0500 %0670 U23 1000 0250 0625 %0671 U24 1000 0250 0750 %0672 U25 1000 0250 0875 %0673 U26 1000 0250 1000 %0674 U27 1000 0375 0000 %0675 V19 1000 0375 0125 %0676 V20 1000 0375 0250 %0677 V21 1000 0375 0375 %0678 V22 1000 0375 0500 %0679 V23 1000 0375 0625 %0680 V24 1000 0375 0750 %0681 V25 1000 0375 0875 %0682 V26 1000 0375 1000 %0683 V27 1000 0500 0000 %0684 W19 1000 0500 0125 %0685 W20 1000 0500 0250 %0686 W21 1000 0500 0375 %0687 W22 1000 0500 0500 %0688 W23 1000 0500 0625 %0689 W24 1000 0500 0750 %0690 W25 1000 0500 0875 %0691 W26 1000 0500 1000 %0692 W27 1000 0625 0000 %0693 X19 1000 0625 0125 %0694 X20 1000 0625 0250 %0695 X21 1000 0625 0375 %0696 X22 1000 0625 0500 %0697 X23 1000 0625 0625 %0698 X24 1000 0625 0750 %0699 X25 1000 0625 0875 %0700 X26 1000 0625 1000 %0701 X27 1000 0750 0000 %0702 Y19 1000 0750 0125 %0703 Y20 1000 0750 0250 %0704 Y21 1000 0750 0375 %0705 Y22 1000 0750 0500 %0706 Y23 1000 0750 0625 %0707 Y24 1000 0750 0750 %0708 Y25 1000 0750 0875 %0709 Y26 1000 0750 1000 %0710 Y27 1000 0875 0000 %0711 Z19 1000 0875 0125 %0712 Z20 1000 0875 0250 %0713 Z21 1000 0875 0375 %0714 Z22 1000 0875 0500 %0715 Z23 1000 0875 0625 %0716 Z24 1000 0875 0750 %0717 Z25 1000 0875 0875 %0718 Z26 1000 0875 1000 %0719 Z27 1000 1000 0000 %0720 a19 1000 1000 0125 %0721 a20 1000 1000 0250 %0722 a21 1000 1000 0375 %0723 a22 1000 1000 0500 %0724 a23 1000 1000 0625 %0725 a24 1000 1000 0750 %0726 a25 1000 1000 0875 %0727 a26 1000 1000 1000 %0728 a27 1000 1000 1000 %0729 b01 0875 1000 1000 %0730 b02 0750 1000 1000 %0731 b03 0625 1000 1000 %0732 b04 0500 1000 1000 %0733 b05 0375 1000 1000 %0734 b06 0250 1000 1000 %0735 b07 0125 1000 1000 %0736 b08 0000 1000 1000 %0737 b09 1000 0875 0875 %0738 c01 0875 0875 0875 %0739 c02 0750 0875 0875 %0740 c03 0625 0875 0875 %0741 c04 0500 0875 0875 %0742 c05 0375 0875 0875 %0743 c06 0250 0875 0875 %0744 c07 0125 0875 0875 %0745 c08 0000 0875 0875 %0746 c09 1000 0750 0750 %0747 d01 0875 0750 0750 %0748 d02 0750 0750 0750 %0749 d03 0625 0750 0750 %0750 d04 0500 0750 0750 %0751 d05 0375 0750 0750 %0752 d06 0250 0750 0750 %0753 d07 0125 0750 0750 %0754 d08 0000 0750 0750 %0755 d09 1000 0625 0625 %0756 e01 0875 0625 0625 %0757 e02 0750 0625 0625 %0758 e03 0625 0625 0625 %0759 e04 0500 0625 0625 %0760 e05 0375 0625 0625 %0761 e06 0250 0625 0625 %0762 e07 0125 0625 0625 %0763 e08 0000 0625 0625 %0764 e09 1000 0500 0500 %0765 f01 0875 0500 0500 %0766 f02 0750 0500 0500 %0767 f03 0625 0500 0500 %0768 f04 0500 0500 0500 %0769 f05 0375 0500 0500 %0770 f06 0250 0500 0500 %0771 f07 0125 0500 0500 %0772 f08 0000 0500 0500 %0773 f09 1000 0375 0375 %0774 g01 0875 0375 0375 %0775 g02 0750 0375 0375 %0776 g03 0625 0375 0375 %0777 g04 0500 0375 0375 %0778 g05 0375 0375 0375 %0779 g06 0250 0375 0375 %0780 g07 0125 0375 0375 %0781 g08 0000 0375 0375 %0782 g09 1000 0250 0250 %0783 h01 0875 0250 0250 %0784 h02 0750 0250 0250 %0785 h03 0625 0250 0250 %0786 h04 0500 0250 0250 %0787 h05 0375 0250 0250 %0788 h06 0250 0250 0250 %0789 h07 0125 0250 0250 %0790 h08 0000 0250 0250 %0791 h09 1000 0125 0125 %0792 i01 0875 0125 0125 %0793 i02 0750 0125 0125 %0794 i03 0625 0125 0125 %0795 i04 0500 0125 0125 %0796 i05 0375 0125 0125 %0797 i06 0250 0125 0125 %0798 i07 0125 0125 0125 %0799 i08 0000 0125 0125 %0800 i09 1000 0000 0000 %0801 j01 0875 0000 0000 %0802 j02 0750 0000 0000 %0803 j03 0625 0000 0000 %0804 j04 0500 0000 0000 %0805 j05 0375 0000 0000 %0806 j06 0250 0000 0000 %0807 j07 0125 0000 0000 %0808 j08 0000 0000 0000 %0809 j09 1000 1000 1000 %0810 b10 0875 0875 1000 %0811 b11 0750 0750 1000 %0812 b12 0625 0625 1000 %0813 b13 0500 0500 1000 %0814 b14 0375 0375 1000 %0815 b15 0250 0250 1000 %0816 b16 0125 0125 1000 %0817 b17 0000 0000 1000 %0818 b18 1000 1000 0875 %0819 c10 0875 0875 0875 %0820 c11 0750 0750 0875 %0821 c12 0625 0625 0875 %0822 c13 0500 0500 0875 %0823 c14 0375 0375 0875 %0824 c15 0250 0250 0875 %0825 c16 0125 0125 0875 %0826 c17 0000 0000 0875 %0827 c18 1000 1000 0750 %0828 d10 0875 0875 0750 %0829 d11 0750 0750 0750 %0830 d12 0625 0625 0750 %0831 d13 0500 0500 0750 %0832 d14 0375 0375 0750 %0833 d15 0250 0250 0750 %0834 d16 0125 0125 0750 %0835 d17 0000 0000 0750 %0836 d18 1000 1000 0625 %0837 e10 0875 0875 0625 %0838 e11 0750 0750 0625 %0839 e12 0625 0625 0625 %0840 e13 0500 0500 0625 %0841 e14 0375 0375 0625 %0842 e15 0250 0250 0625 %0843 e16 0125 0125 0625 %0844 e17 0000 0000 0625 %0845 e18 1000 1000 0500 %0846 f10 0875 0875 0500 %0847 f11 0750 0750 0500 %0848 f12 0625 0625 0500 %0849 f13 0500 0500 0500 %0850 f14 0375 0375 0500 %0851 f15 0250 0250 0500 %0852 f16 0125 0125 0500 %0853 f17 0000 0000 0500 %0854 f18 1000 1000 0375 %0855 g10 0875 0875 0375 %0856 g11 0750 0750 0375 %0857 g12 0625 0625 0375 %0858 g13 0500 0500 0375 %0859 g14 0375 0375 0375 %0860 g15 0250 0250 0375 %0861 g16 0125 0125 0375 %0862 g17 0000 0000 0375 %0863 g18 1000 1000 0250 %0864 h10 0875 0875 0250 %0865 h11 0750 0750 0250 %0866 h12 0625 0625 0250 %0867 h13 0500 0500 0250 %0868 h14 0375 0375 0250 %0869 h15 0250 0250 0250 %0870 h16 0125 0125 0250 %0871 h17 0000 0000 0250 %0872 h18 1000 1000 0125 %0873 i10 0875 0875 0125 %0874 i11 0750 0750 0125 %0875 i12 0625 0625 0125 %0876 i13 0500 0500 0125 %0877 i14 0375 0375 0125 %0878 i15 0250 0250 0125 %0879 i16 0125 0125 0125 %0880 i17 0000 0000 0125 %0881 i18 1000 1000 0000 %0882 j10 0875 0875 0000 %0883 j11 0750 0750 0000 %0884 j12 0625 0625 0000 %0885 j13 0500 0500 0000 %0886 j14 0375 0375 0000 %0887 j15 0250 0250 0000 %0888 j16 0125 0125 0000 %0889 j17 0000 0000 0000 %0890 j18 1000 1000 1000 %0891 b19 1000 0875 1000 %0892 b20 1000 0750 1000 %0893 b21 1000 0625 1000 %0894 b22 1000 0500 1000 %0895 b23 1000 0375 1000 %0896 b24 1000 0250 1000 %0897 b25 1000 0125 1000 %0898 b26 1000 0000 1000 %0899 b27 0875 1000 0875 %0900 c19 0875 0875 0875 %0901 c20 0875 0750 0875 %0902 c21 0875 0625 0875 %0903 c22 0875 0500 0875 %0904 c23 0875 0375 0875 %0905 c24 0875 0250 0875 %0906 c25 0875 0125 0875 %0907 c26 0875 0000 0875 %0908 c27 0750 1000 0750 %0909 d19 0750 0875 0750 %0910 d20 0750 0750 0750 %0911 d21 0750 0625 0750 %0912 d22 0750 0500 0750 %0913 d23 0750 0375 0750 %0914 d24 0750 0250 0750 %0915 d25 0750 0125 0750 %0916 d26 0750 0000 0750 %0917 d27 0625 1000 0625 %0918 e19 0625 0875 0625 %0919 e20 0625 0750 0625 %0920 e21 0625 0625 0625 %0921 e22 0625 0500 0625 %0922 e23 0625 0375 0625 %0923 e24 0625 0250 0625 %0924 e25 0625 0125 0625 %0925 e26 0625 0000 0625 %0926 e27 0500 1000 0500 %0927 f19 0500 0875 0500 %0928 f20 0500 0750 0500 %0929 f21 0500 0625 0500 %0930 f22 0500 0500 0500 %0931 f23 0500 0375 0500 %0932 f24 0500 0250 0500 %0933 f25 0500 0125 0500 %0934 f26 0500 0000 0500 %0935 f27 0375 1000 0375 %0936 g19 0375 0875 0375 %0937 g20 0375 0750 0375 %0938 g21 0375 0625 0375 %0939 g22 0375 0500 0375 %0940 g23 0375 0375 0375 %0941 g24 0375 0250 0375 %0942 g25 0375 0125 0375 %0943 g26 0375 0000 0375 %0944 g27 0250 1000 0250 %0945 h19 0250 0875 0250 %0946 h20 0250 0750 0250 %0947 h21 0250 0625 0250 %0948 h22 0250 0500 0250 %0949 h23 0250 0375 0250 %0950 h24 0250 0250 0250 %0951 h25 0250 0125 0250 %0952 h26 0250 0000 0250 %0953 h27 0125 1000 0125 %0954 i19 0125 0875 0125 %0955 i20 0125 0750 0125 %0956 i21 0125 0625 0125 %0957 i22 0125 0500 0125 %0958 i23 0125 0375 0125 %0959 i24 0125 0250 0125 %0960 i25 0125 0125 0125 %0961 i26 0125 0000 0125 %0962 i27 0000 1000 0000 %0963 j19 0000 0875 0000 %0964 j20 0000 0750 0000 %0965 j21 0000 0625 0000 %0966 j22 0000 0500 0000 %0967 j23 0000 0375 0000 %0968 j24 0000 0250 0000 %0969 j25 0000 0125 0000 %0970 j26 0000 0000 0000 %0971 j27 0000 0000 0000 %0972 k01 0125 0125 0125 %0973 k02 0250 0250 0250 %0974 k03 0375 0375 0375 %0975 k04 0500 0500 0500 %0976 k05 0625 0625 0625 %0977 k06 0750 0750 0750 %0978 k07 0875 0875 0875 %0979 k08 1000 1000 1000 %0980 k09 0000 0000 0000 %0981 l01 0125 0125 0125 %0982 l02 0250 0250 0250 %0983 l03 0375 0375 0375 %0984 l04 0500 0500 0500 %0985 l05 0625 0625 0625 %0986 l06 0750 0750 0750 %0987 l07 0875 0875 0875 %0988 l08 1000 1000 1000 %0989 l09 0000 0000 0000 %0990 m01 0125 0125 0125 %0991 m02 0250 0250 0250 %0992 m03 0375 0375 0375 %0993 m04 0500 0500 0500 %0994 m05 0625 0625 0625 %0995 m06 0750 0750 0750 %0996 m07 0875 0875 0875 %0997 m08 1000 1000 1000 %0998 m09 0000 0000 0000 %0999 n01 0125 0125 0125 %1000 n02 0250 0250 0250 %1001 n03 0375 0375 0375 %1002 n04 0500 0500 0500 %1003 n05 0625 0625 0625 %1004 n06 0750 0750 0750 %1005 n07 0875 0875 0875 %1006 n08 1000 1000 1000 %1007 n09 0000 0000 0000 %1008 k10 0066 0066 0066 %1009 k11 0133 0133 0133 %1010 k12 0200 0200 0200 %1011 k13 0266 0266 0266 %1012 k14 0333 0333 0333 %1013 k15 0400 0400 0400 %1014 k16 0466 0466 0466 %1015 k17 0533 0533 0533 %1016 k18 0600 0600 0600 %1017 k19 0666 0666 0666 %1018 k20 0734 0734 0734 %1019 k21 0800 0800 0800 %1020 k22 0866 0866 0866 %1021 k23 0933 0933 0933 %1022 k24 1000 1000 1000 %1023 k25 0000 0000 0000 %1024 l10 0066 0066 0066 %1025 l11 0133 0133 0133 %1026 l12 0200 0200 0200 %1027 l13 0266 0266 0266 %1028 l14 0333 0333 0333 %1029 l15 0400 0400 0400 %1030 l16 0466 0466 0466 %1031 l17 0533 0533 0533 %1032 l18 0600 0600 0600 %1033 l19 0666 0666 0666 %1034 l20 0734 0734 0734 %1035 l21 0800 0800 0800 %1036 l22 0866 0866 0866 %1037 l23 0933 0933 0933 %1038 l24 1000 1000 1000 %1039 l25 0000 0000 0000 %1040 m10 0066 0066 0066 %1041 m11 0133 0133 0133 %1042 m12 0200 0200 0200 %1043 m13 0266 0266 0266 %1044 m14 0333 0333 0333 %1045 m15 0400 0400 0400 %1046 m16 0466 0466 0466 %1047 m17 0533 0533 0533 %1048 m18 0600 0600 0600 %1049 m19 0666 0666 0666 %1050 m20 0734 0734 0734 %1051 m21 0800 0800 0800 %1052 m22 0866 0866 0866 %1053 m23 0933 0933 0933 %1054 m24 1000 1000 1000 %1055 m25 0000 0000 0000 %1056 n10 0066 0066 0066 %1057 n11 0133 0133 0133 %1058 n12 0200 0200 0200 %1059 n13 0266 0266 0266 %1060 n14 0333 0333 0333 %1061 n15 0400 0400 0400 %1062 n16 0466 0466 0466 %1063 n17 0533 0533 0533 %1064 n18 0600 0600 0600 %1065 n19 0666 0666 0666 %1066 n20 0734 0734 0734 %1067 n21 0800 0800 0800 %1068 n22 0866 0866 0866 %1069 n23 0933 0933 0933 %1070 n24 1000 1000 1000 %1071 n25 0000 0000 0000 %1072 k26 1000 1000 1000 %1073 k27 1000 0000 0000 %1074 l26 0000 1000 1000 %1075 l27 1000 1000 0000 %1076 m26 0000 0000 1000 %1077 m27 0000 1000 0000 %1078 n26 1000 0000 1000 %1079 n27 0000 1000 0000 %1078 nx6 1000 0000 1000 %1079 nx7 ] def %END RGB0_F %***************************************************************** %} def %END PROC_SPEC_IOF.PS %END COLDATA-SRGB_00.PS %**************************************************** %END 'UE49'OUTLIN1X.PS Other procedures for sRGB output linearization %**************************************************** %BEG UE49/OUTLIN1Y.PS Emty 20101101 %END UE49/OUTLIN1Y.PS Emty 20101101 /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 % End for EPS file 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 /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 %%EndProlog %*********************************************************** %%BeginPageSetup /#copies 1 def %A4querF 1.0 1.0 scale /pgsave save def %%EndPageSetup /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$ [(A.TXT /.PS) (B.BMP /.PS) (G.GIF /.PS) (H.HTM /.PS) (I.HTM /.PS) (J.JPE /.PS) (P.PDF /.PS) (T.TIF /.PS)] def /EY$ [(A.DAT) (B.DAT) (G.DAT) (H.DAT) (I.DAT) (J.DAT) (P.DAT) (T.DAT)] def %******************************************************************* /lanind1f 01 def /lanind2f 01 def /laninddf 01 def /colorm1f 00 def /colorm2f 00 def /colormdf 01 def /deintp1f 00 def /deintp2f 00 def /deintpdf 01 def /xcolor1f 00 def /xcolor2f 00 def /xcolordf 01 def /xchart1f 00 def /xchart2f 03 def /xchartdf 01 def /xchart3f 01 def /xchart4f 00 def /xchart5f 00 def /pchart1f 03 def /pchart2f 03 def /pchartdf 01 def %=3 for sRGB, Lr=0 /colsep1f 00 def /colsep2f 00 def /colsepdf 01 def /pmetam1f 00 def /pmetam2f 00 def /pmetamdf 01 def %/lanindf lanind1f def % /lanindf lanind1f def %lanind1f laninddf lanind2f {/lanindf 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0.1543E+01 0.1091E+00 0.3465E-02 400088 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400098 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400108 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400118 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400128 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400138 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400148 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400158 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400168 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400178 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 400188 0.1468 0.1914 0.3677E-01 0.1158E+01 0.0000 0.0000 0.4899E-01 1 3 1 1 14 0.1543E+01 0.1091E+00 0.3465E-02 % 18 12 0201 R 630.0 89 400018 0.5838 0.3232 0.2141E+01 0.6745E+02 0.0000 0.0000 0.1142E+00 1 3 1 1 14 0.3595E+01 0.2177E+00 0.6911E-02 400028 0.5838 0.3232 0.8457E+00 0.2664E+02 0.0000 0.0000 0.6222E-01 1 3 1 1 14 0.1960E+01 0.1489E+00 0.4726E-02 400038 0.5838 0.3232 0.3895E+00 0.1227E+02 0.0000 0.0000 0.4391E-01 1 3 1 1 14 0.1383E+01 0.2679E-01 0.8505E-03 400048 0.5838 0.3232 0.2098E+00 0.6610E+01 0.0000 0.0000 0.3520E-01 1 3 1 1 14 0.1109E+01 0.6333E-01 0.2011E-02 400058 0.5838 0.3232 0.1162E+00 0.3659E+01 0.0000 0.0000 0.3107E-01 1 3 1 1 14 0.9789E+00 0.1738E-01 0.5518E-03 400068 0.5838 0.3232 0.6527E-01 0.2056E+01 0.0000 0.0000 0.3040E-01 1 3 1 1 14 0.9577E+00 0.6048E-01 0.1920E-02 400078 0.5838 0.3232 0.8228E-01 0.2592E+01 0.0000 0.0000 0.3827E-01 1 3 1 1 14 0.1206E+01 0.5838E-01 0.1853E-02 400088 0.5838 0.3232 0.3269E-01 0.1030E+01 0.0000 0.0000 0.2935E-01 1 3 1 1 14 0.9244E+00 0.9003E-01 0.2858E-02 400098 0.5838 0.3232 0.1534E-01 0.4831E+00 0.0000 0.0000 0.2868E-01 1 3 1 1 14 0.9032E+00 0.4098E-01 0.1301E-02 400108 0.5838 0.3232 0.8388E-02 0.2642E+00 0.0000 0.0000 0.2889E-01 1 3 1 1 14 0.9103E+00 0.9011E-01 0.2861E-02 400118 0.5838 0.3232 0.4732E-02 0.1491E+00 0.0000 0.0000 0.3056E-01 1 3 1 1 14 0.9627E+00 0.4696E-01 0.1491E-02 400128 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400138 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400148 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400158 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400168 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400178 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 400188 0.5838 0.3232 0.2641E-02 0.8318E-01 0.0000 0.0000 0.3070E-01 1 3 1 1 14 0.9671E+00 0.5992E-01 0.1902E-02 % 18 12 AD01 G 630.0 89 400018 0.2552 0.4446 0.4029E+01 0.1269E+03 0.0000 0.0000 0.3348E+00 1 3 1 1 14 0.1055E+02 0.9698E+00 0.3079E-01 400028 0.2552 0.4446 0.1591E+01 0.5012E+02 0.0000 0.0000 0.1929E+00 1 3 1 1 14 0.6078E+01 0.3359E+00 0.1066E-01 400038 0.2552 0.4446 0.7329E+00 0.2309E+02 0.0000 0.0000 0.1283E+00 1 3 1 1 14 0.4042E+01 0.1787E+00 0.5673E-02 400048 0.2552 0.4446 0.3948E+00 0.1244E+02 0.0000 0.0000 0.1077E+00 1 3 1 1 14 0.3392E+01 0.4362E+00 0.1385E-01 400058 0.2552 0.4446 0.2185E+00 0.6884E+01 0.0000 0.0000 0.7879E-01 1 3 1 1 14 0.2482E+01 0.1958E+00 0.6217E-02 400068 0.2552 0.4446 0.1228E+00 0.3868E+01 0.0000 0.0000 0.6804E-01 1 3 1 1 14 0.2143E+01 0.2709E+00 0.8600E-02 400078 0.2552 0.4446 0.1548E+00 0.4876E+01 0.0000 0.0000 0.7100E-01 1 3 1 1 14 0.2236E+01 0.1620E+00 0.5144E-02 400088 0.2552 0.4446 0.6150E-01 0.1937E+01 0.0000 0.0000 0.5751E-01 1 3 1 1 14 0.1812E+01 0.1107E+00 0.3514E-02 400098 0.2552 0.4446 0.2886E-01 0.9090E+00 0.0000 0.0000 0.5277E-01 1 3 1 1 14 0.1662E+01 0.3124E-01 0.9919E-03 400108 0.2552 0.4446 0.1578E-01 0.4971E+00 0.0000 0.0000 0.5253E-01 1 3 1 1 14 0.1655E+01 0.3848E-01 0.1222E-02 400118 0.2552 0.4446 0.8903E-02 0.2804E+00 0.0000 0.0000 0.5183E-01 1 3 1 1 14 0.1633E+01 0.4376E-01 0.1389E-02 400128 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400138 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400148 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400158 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400168 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400178 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 400188 0.2552 0.4446 0.4968E-02 0.1565E+00 0.0000 0.0000 0.4676E-01 1 3 1 1 14 0.1473E+01 0.1152E+00 0.3656E-02 % 18 18 0401 A 63.0 89 405018 0.3442 0.4043 0.4232E+03 0.1333E+04 0.0000 0.0000 0.9129E+02 1 3 1 0 14 0.2876E+03 0.1673E+02 0.5310E+01 405028 0.3442 0.4043 0.1671E+03 0.5265E+03 0.0000 0.0000 0.1315E+02 1 3 1 0 14 0.4141E+02 0.4628E+01 0.1469E+01 405038 0.3442 0.4043 0.7699E+02 0.2425E+03 0.0000 0.0000 0.5052E+01 1 3 1 0 14 0.1592E+02 0.1117E+01 0.3546E+00 405048 0.3442 0.4043 0.4147E+02 0.1306E+03 0.0000 0.0000 0.2163E+01 1 3 1 0 14 0.6813E+01 0.7054E+00 0.2239E+00 405058 0.3442 0.4043 0.2296E+02 0.7231E+02 0.0000 0.0000 0.9709E+00 1 3 1 0 14 0.3058E+01 0.1800E+00 0.5712E-01 405068 0.3442 0.4043 0.1290E+02 0.4064E+02 0.0000 0.0000 0.5300E+00 1 3 1 0 14 0.1669E+01 0.1292E+00 0.4101E-01 405078 0.3442 0.4043 0.1626E+02 0.5122E+02 0.0000 0.0000 0.8127E+00 1 3 1 0 14 0.2560E+01 0.1782E+00 0.5657E-01 405088 0.3442 0.4043 0.6460E+01 0.2035E+02 0.0000 0.0000 0.2919E+00 1 3 1 0 14 0.9195E+00 0.6327E-01 0.2008E-01 405098 0.3442 0.4043 0.3031E+01 0.9548E+01 0.0000 0.0000 0.2010E+00 1 3 1 0 14 0.6332E+00 0.3635E-01 0.1154E-01 405108 0.3442 0.4043 0.1658E+01 0.5222E+01 0.0000 0.0000 0.1440E+00 1 3 1 0 14 0.4536E+00 0.2453E-01 0.7787E-02 405118 0.3442 0.4043 0.9352E+00 0.2946E+01 0.0000 0.0000 0.1164E+00 1 3 1 0 14 0.3665E+00 0.1319E-01 0.4188E-02 405128 0.3442 0.4043 0.5219E+00 0.1644E+01 0.0000 0.0000 0.8657E-01 1 3 1 0 14 0.2726E+00 0.1345E-01 0.4271E-02 405138 0.3442 0.4043 0.6437E+00 0.2028E+01 0.0000 0.0000 0.1145E+00 1 3 1 0 14 0.3607E+00 0.2347E-01 0.7451E-02 405148 0.3442 0.4043 0.2542E+00 0.8008E+00 0.0000 0.0000 0.9216E-01 1 3 1 0 14 0.2903E+00 0.1146E-01 0.3636E-02 405158 0.3442 0.4043 0.1171E+00 0.3688E+00 0.0000 0.0000 0.8205E-01 1 3 1 0 14 0.2584E+00 0.1478E-01 0.4693E-02 405168 0.3442 0.4043 0.6307E-01 0.1987E+00 0.0000 0.0000 0.7929E-01 1 3 1 0 14 0.2498E+00 0.1237E-01 0.3926E-02 405178 0.3442 0.4043 0.3492E-01 0.1100E+00 0.0000 0.0000 0.7547E-01 1 3 1 0 14 0.2377E+00 0.8985E-02 0.2853E-02 405188 0.3442 0.4043 0.1962E-01 0.6181E-01 0.0000 0.0000 0.7472E-01 1 3 1 0 14 0.2353E+00 0.1852E-01 0.5878E-02 % 18 18 0201 Y 63.0 89 405018 0.4500 0.4693 0.1138E+03 0.3585E+03 0.0000 0.0000 0.8911E+01 1 3 1 1 14 0.2807E+02 0.3805E+01 0.1208E+01 405028 0.4500 0.4693 0.4494E+02 0.1416E+03 0.0000 0.0000 0.3024E+01 1 3 1 1 14 0.9526E+01 0.8712E+00 0.2765E+00 405038 0.4500 0.4693 0.2070E+02 0.6521E+02 0.0000 0.0000 0.9656E+00 1 3 1 1 14 0.3042E+01 0.1331E+00 0.4224E-01 405048 0.4500 0.4693 0.1115E+02 0.3513E+02 0.0000 0.0000 0.4561E+00 1 3 1 1 14 0.1436E+01 0.1682E+00 0.5338E-01 405058 0.4500 0.4693 0.6173E+01 0.1944E+02 0.0000 0.0000 0.2693E+00 1 3 1 1 14 0.8484E+00 0.3274E-01 0.1039E-01 405068 0.4500 0.4693 0.3469E+01 0.1093E+02 0.0000 0.0000 0.1992E+00 1 3 1 1 14 0.6274E+00 0.5226E-01 0.1659E-01 405078 0.4500 0.4693 0.4373E+01 0.1377E+02 0.0000 0.0000 0.3084E+00 1 3 1 1 14 0.9714E+00 0.4580E-01 0.1454E-01 405088 0.4500 0.4693 0.1737E+01 0.5472E+01 0.0000 0.0000 0.1790E+00 1 3 1 1 14 0.5638E+00 0.2122E-01 0.6737E-02 405098 0.4500 0.4693 0.8151E+00 0.2567E+01 0.0000 0.0000 0.1386E+00 1 3 1 1 14 0.4365E+00 0.1992E-01 0.6324E-02 405108 0.4500 0.4693 0.4458E+00 0.1404E+01 0.0000 0.0000 0.9943E-01 1 3 1 1 14 0.3133E+00 0.9099E-02 0.2888E-02 405118 0.4500 0.4693 0.2515E+00 0.7921E+00 0.0000 0.0000 0.9556E-01 1 3 1 1 14 0.3009E+00 0.1648E-01 0.5233E-02 405128 0.4500 0.4693 0.1403E+00 0.4420E+00 0.0000 0.0000 0.8572E-01 1 3 1 1 14 0.2701E+00 0.3157E-01 0.1002E-01 405138 0.4500 0.4693 0.1731E+00 0.5452E+00 0.0000 0.0000 0.8870E-01 1 3 1 1 14 0.2794E+00 0.2161E-01 0.6860E-02 405148 0.4500 0.4693 0.6836E-01 0.2153E+00 0.0000 0.0000 0.7606E-01 1 3 1 1 14 0.2396E+00 0.2173E-01 0.6898E-02 405158 0.4500 0.4693 0.3149E-01 0.9918E-01 0.0000 0.0000 0.7757E-01 1 3 1 1 14 0.2444E+00 0.1121E-01 0.3558E-02 405168 0.4500 0.4693 0.1696E-01 0.5343E-01 0.0000 0.0000 0.6756E-01 1 3 1 1 14 0.2128E+00 0.1959E-01 0.6218E-02 405178 0.4500 0.4693 0.9389E-02 0.2958E-01 0.0000 0.0000 0.7300E-01 1 3 1 1 14 0.2300E+00 0.2194E-01 0.6964E-02 405188 0.4500 0.4693 0.5276E-02 0.1662E-01 0.0000 0.0000 0.7400E-01 1 3 1 1 14 0.2331E+00 0.1939E-01 0.6154E-02 % 18 12 0201 B 63.0 89 405018 0.1468 0.1914 0.1206E+02 0.3799E+02 0.0000 0.0000 0.1283E+01 1 3 1 1 14 0.4040E+01 0.1286E+00 0.4083E-01 405028 0.1468 0.1914 0.4763E+01 0.1500E+02 0.0000 0.0000 0.5074E+00 1 3 1 1 14 0.1598E+01 0.5426E-01 0.1723E-01 405038 0.1468 0.1914 0.2194E+01 0.6911E+01 0.0000 0.0000 0.2747E+00 1 3 1 1 14 0.8653E+00 0.5816E-01 0.1847E-01 405048 0.1468 0.1914 0.1182E+01 0.3723E+01 0.0000 0.0000 0.1940E+00 1 3 1 1 14 0.6112E+00 0.4341E-01 0.1378E-01 405058 0.1468 0.1914 0.6542E+00 0.2061E+01 0.0000 0.0000 0.1260E+00 1 3 1 1 14 0.3970E+00 0.2488E-01 0.7898E-02 405068 0.1468 0.1914 0.3677E+00 0.1158E+01 0.0000 0.0000 0.1012E+00 1 3 1 1 14 0.3188E+00 0.1423E-01 0.4517E-02 405078 0.1468 0.1914 0.4634E+00 0.1460E+01 0.0000 0.0000 0.1147E+00 1 3 1 1 14 0.3613E+00 0.1867E-01 0.5925E-02 405088 0.1468 0.1914 0.1841E+00 0.5800E+00 0.0000 0.0000 0.7360E-01 1 3 1 1 14 0.2318E+00 0.1295E-01 0.4109E-02 405098 0.1468 0.1914 0.8639E-01 0.2721E+00 0.0000 0.0000 0.7326E-01 1 3 1 1 14 0.2308E+00 0.1037E-01 0.3292E-02 405108 0.1468 0.1914 0.4725E-01 0.1488E+00 0.0000 0.0000 0.6283E-01 1 3 1 1 14 0.1979E+00 0.1850E-01 0.5873E-02 405118 0.1468 0.1914 0.2665E-01 0.8396E-01 0.0000 0.0000 0.6605E-01 1 3 1 1 14 0.2081E+00 0.6466E-02 0.2053E-02 405128 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405138 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405148 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405158 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405168 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405178 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 405188 0.1468 0.1914 0.1487E-01 0.4685E-01 0.0000 0.0000 0.6101E-01 1 3 1 1 14 0.1921E+00 0.1354E-01 0.4299E-02 % 18 12 0201 R 63.0 89 405018 0.5838 0.3232 0.2141E+02 0.6745E+02 0.0000 0.0000 0.2248E+01 1 3 1 1 14 0.7082E+01 0.5383E+00 0.1709E+00 405028 0.5838 0.3232 0.8457E+01 0.2664E+02 0.0000 0.0000 0.7215E+00 1 3 1 1 14 0.2273E+01 0.1619E+00 0.5138E-01 405038 0.5838 0.3232 0.3895E+01 0.1227E+02 0.0000 0.0000 0.3265E+00 1 3 1 1 14 0.1028E+01 0.4297E-01 0.1364E-01 405048 0.5838 0.3232 0.2098E+01 0.6610E+01 0.0000 0.0000 0.1674E+00 1 3 1 1 14 0.5274E+00 0.3273E-01 0.1039E-01 405058 0.5838 0.3232 0.1162E+01 0.3659E+01 0.0000 0.0000 0.1300E+00 1 3 1 1 14 0.4095E+00 0.3259E-01 0.1035E-01 405068 0.5838 0.3232 0.6527E+00 0.2056E+01 0.0000 0.0000 0.8911E-01 1 3 1 1 14 0.2808E+00 0.1697E-01 0.5388E-02 405078 0.5838 0.3232 0.8228E+00 0.2592E+01 0.0000 0.0000 0.1289E+00 1 3 1 1 14 0.4062E+00 0.2736E-01 0.8684E-02 405088 0.5838 0.3232 0.3269E+00 0.1030E+01 0.0000 0.0000 0.7428E-01 1 3 1 1 14 0.2340E+00 0.2490E-01 0.7905E-02 405098 0.5838 0.3232 0.1534E+00 0.4831E+00 0.0000 0.0000 0.6203E-01 1 3 1 1 14 0.1954E+00 0.1281E-01 0.4066E-02 405108 0.5838 0.3232 0.8388E-01 0.2642E+00 0.0000 0.0000 0.5347E-01 1 3 1 1 14 0.1684E+00 0.9714E-02 0.3084E-02 405118 0.5838 0.3232 0.4732E-01 0.1491E+00 0.0000 0.0000 0.4456E-01 1 3 1 1 14 0.1403E+00 0.1295E-01 0.4110E-02 405128 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405138 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405148 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405158 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405168 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405178 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 405188 0.5838 0.3232 0.2641E-01 0.8318E-01 0.0000 0.0000 0.4111E-01 1 3 1 1 14 0.1295E+00 0.1227E-01 0.3896E-02 % 18 12 AD01 G 63.0 89 405018 0.2552 0.4446 0.4029E+02 0.1269E+03 0.0000 0.0000 0.3216E+01 1 3 1 1 14 0.1013E+02 0.7332E+00 0.2328E+00 405028 0.2552 0.4446 0.1591E+02 0.5012E+02 0.0000 0.0000 0.1033E+01 1 3 1 1 14 0.3256E+01 0.7361E-01 0.2337E-01 405038 0.2552 0.4446 0.7329E+01 0.2309E+02 0.0000 0.0000 0.4850E+00 1 3 1 1 14 0.1528E+01 0.4395E-01 0.1395E-01 405048 0.2552 0.4446 0.3948E+01 0.1244E+02 0.0000 0.0000 0.3326E+00 1 3 1 1 14 0.1048E+01 0.4447E-01 0.1412E-01 405058 0.2552 0.4446 0.2185E+01 0.6884E+01 0.0000 0.0000 0.2087E+00 1 3 1 1 14 0.6572E+00 0.2203E-01 0.6995E-02 405068 0.2552 0.4446 0.1228E+01 0.3868E+01 0.0000 0.0000 0.1512E+00 1 3 1 1 14 0.4761E+00 0.2533E-01 0.8041E-02 405078 0.2552 0.4446 0.1548E+01 0.4876E+01 0.0000 0.0000 0.1915E+00 1 3 1 1 14 0.6033E+00 0.3533E-01 0.1122E-01 405088 0.2552 0.4446 0.6150E+00 0.1937E+01 0.0000 0.0000 0.1159E+00 1 3 1 1 14 0.3651E+00 0.1268E-01 0.4026E-02 405098 0.2552 0.4446 0.2886E+00 0.9090E+00 0.0000 0.0000 0.1035E+00 1 3 1 1 14 0.3261E+00 0.4958E-02 0.1574E-02 405108 0.2552 0.4446 0.1578E+00 0.4971E+00 0.0000 0.0000 0.7201E-01 1 3 1 1 14 0.2268E+00 0.1766E-01 0.5607E-02 405118 0.2552 0.4446 0.8903E-01 0.2804E+00 0.0000 0.0000 0.7178E-01 1 3 1 1 14 0.2261E+00 0.1439E-01 0.4567E-02 405128 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405138 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405148 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405158 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405168 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405178 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 405188 0.2552 0.4446 0.4968E-01 0.1565E+00 0.0000 0.0000 0.6498E-01 1 3 1 1 14 0.2047E+00 0.1375E-01 0.4365E-02 % 18 04 KR01 A 6.3 89 410018 0.3442 0.4043 0.4232E+04 0.1333E+04 0.0000 0.0000 0.9690E+03 1 3 1 0 14 0.3052E+03 0.6645E+02 0.2110E+03 410028 0.3442 0.4043 0.1671E+04 0.5265E+03 0.0000 0.0000 0.3781E+03 1 3 1 0 14 0.1191E+03 0.1115E+02 0.3540E+02 410038 0.3442 0.4043 0.7699E+03 0.2425E+03 0.0000 0.0000 0.1089E+03 1 3 1 0 14 0.3431E+02 0.4474E+01 0.1421E+02 410048 0.3442 0.4043 0.4147E+03 0.1306E+03 0.0000 0.0000 0.3613E+02 1 3 1 0 14 0.1138E+02 0.2259E+01 0.7171E+01 410058 0.3442 0.4043 0.2296E+03 0.7231E+02 0.0000 0.0000 0.1960E+02 1 3 1 0 14 0.6175E+01 0.8004E+00 0.2541E+01 410068 0.3442 0.4043 0.1290E+03 0.4064E+02 0.0000 0.0000 0.1069E+02 1 3 1 0 14 0.3367E+01 0.3492E+00 0.1109E+01 410078 0.3442 0.4043 0.1626E+03 0.5122E+02 0.0000 0.0000 0.1943E+02 1 3 1 0 14 0.6120E+01 0.6487E+00 0.2059E+01 410088 0.3442 0.4043 0.6460E+02 0.2035E+02 0.0000 0.0000 0.6109E+01 1 3 1 0 14 0.1924E+01 0.1748E+00 0.5548E+00 410098 0.3442 0.4043 0.3031E+02 0.9548E+01 0.0000 0.0000 0.2432E+01 1 3 1 0 14 0.7660E+00 0.5810E-01 0.1844E+00 410108 0.3442 0.4043 0.1658E+02 0.5222E+01 0.0000 0.0000 0.1172E+01 1 3 1 0 14 0.3694E+00 0.2347E-01 0.7449E-01 410118 0.3442 0.4043 0.9352E+01 0.2946E+01 0.0000 0.0000 0.5718E+00 1 3 1 0 14 0.1801E+00 0.1051E-01 0.3336E-01 410128 0.3442 0.4043 0.5219E+01 0.1644E+01 0.0000 0.0000 0.3379E+00 1 3 1 0 14 0.1065E+00 0.5319E-02 0.1688E-01 410138 0.3442 0.4043 0.6437E+01 0.2028E+01 0.0000 0.0000 0.5790E+00 1 3 1 0 14 0.1824E+00 0.1277E-01 0.4053E-01 410148 0.3442 0.4043 0.2542E+01 0.8008E+00 0.0000 0.0000 0.3308E+00 1 3 1 0 14 0.1042E+00 0.5160E-02 0.1639E-01 410158 0.3442 0.4043 0.1171E+01 0.3688E+00 0.0000 0.0000 0.2543E+00 1 3 1 0 14 0.8012E-01 0.6653E-02 0.2112E-01 410168 0.3442 0.4043 0.6307E+00 0.1987E+00 0.0000 0.0000 0.2358E+00 1 3 1 0 14 0.7426E-01 0.3461E-02 0.1099E-01 410178 0.3442 0.4043 0.3492E+00 0.1100E+00 0.0000 0.0000 0.2005E+00 1 3 1 0 14 0.6315E-01 0.3368E-02 0.1069E-01 410188 0.3442 0.4043 0.1962E+00 0.6181E-01 0.0000 0.0000 0.1817E+00 1 3 1 0 14 0.5724E-01 0.3769E-02 0.1196E-01 % 18 18 0201 Y 6.3 89 410018 0.4500 0.4693 0.1138E+04 0.3585E+03 0.0000 0.0000 0.3580E+03 1 3 1 0 14 0.1128E+03 0.2577E+01 0.8181E+01 410028 0.4500 0.4693 0.4494E+03 0.1416E+03 0.0000 0.0000 0.6709E+02 1 3 1 0 14 0.2113E+02 0.1478E+01 0.4694E+01 410038 0.4500 0.4693 0.2070E+03 0.6521E+02 0.0000 0.0000 0.2730E+02 1 3 1 0 14 0.8597E+01 0.1542E+01 0.4893E+01 410048 0.4500 0.4693 0.1115E+03 0.3513E+02 0.0000 0.0000 0.1093E+02 1 3 1 0 14 0.3445E+01 0.3964E+00 0.1259E+01 410058 0.4500 0.4693 0.6173E+02 0.1944E+02 0.0000 0.0000 0.5043E+01 1 3 1 0 14 0.1589E+01 0.9898E-01 0.3142E+00 410068 0.4500 0.4693 0.3469E+02 0.1093E+02 0.0000 0.0000 0.2453E+01 1 3 1 0 14 0.7725E+00 0.7002E-01 0.2223E+00 410078 0.4500 0.4693 0.4373E+02 0.1377E+02 0.0000 0.0000 0.5957E+01 1 3 1 0 14 0.1877E+01 0.1346E+00 0.4275E+00 410088 0.4500 0.4693 0.1737E+02 0.5472E+01 0.0000 0.0000 0.1465E+01 1 3 1 0 14 0.4613E+00 0.3333E-01 0.1058E+00 410098 0.4500 0.4693 0.8151E+01 0.2567E+01 0.0000 0.0000 0.6265E+00 1 3 1 0 14 0.1974E+00 0.9051E-02 0.2873E-01 410108 0.4500 0.4693 0.4458E+01 0.1404E+01 0.0000 0.0000 0.4173E+00 1 3 1 0 14 0.1314E+00 0.1021E-02 0.3240E-02 410118 0.4500 0.4693 0.2515E+01 0.7921E+00 0.0000 0.0000 0.3033E+00 1 3 1 0 14 0.9555E-01 0.4777E-02 0.1516E-01 410128 0.4500 0.4693 0.1403E+01 0.4420E+00 0.0000 0.0000 0.2490E+00 1 3 1 0 14 0.7841E-01 0.5257E-02 0.1669E-01 410138 0.4500 0.4693 0.1731E+01 0.5452E+00 0.0000 0.0000 0.3426E+00 1 3 1 0 14 0.1079E+00 0.1130E-01 0.3589E-01 410148 0.4500 0.4693 0.6836E+00 0.2153E+00 0.0000 0.0000 0.2512E+00 1 3 1 0 14 0.7914E-01 0.6754E-02 0.2144E-01 410158 0.4500 0.4693 0.3149E+00 0.9918E-01 0.0000 0.0000 0.2089E+00 1 3 1 0 14 0.6581E-01 0.3725E-02 0.1182E-01 410168 0.4500 0.4693 0.1696E+00 0.5343E-01 0.0000 0.0000 0.2120E+00 1 3 1 0 14 0.6678E-01 0.2228E-02 0.7071E-02 410178 0.4500 0.4693 0.9389E-01 0.2958E-01 0.0000 0.0000 0.2008E+00 1 3 1 0 14 0.6323E-01 0.3561E-02 0.1131E-01 410188 0.4500 0.4693 0.5276E-01 0.1662E-01 0.0000 0.0000 0.1867E+00 1 3 1 0 14 0.5881E-01 0.5114E-02 0.1623E-01 % 18 12 0201 B 6.3 89 410018 0.1468 0.1914 0.1206E+03 0.3799E+02 0.0000 0.0000 0.2019E+02 1 3 1 1 14 0.6359E+01 0.5155E+00 0.1636E+01 410028 0.1468 0.1914 0.4763E+02 0.1500E+02 0.0000 0.0000 0.7279E+01 1 3 1 1 14 0.2293E+01 0.1342E+00 0.4261E+00 410038 0.1468 0.1914 0.2194E+02 0.6911E+01 0.0000 0.0000 0.3167E+01 1 3 1 1 14 0.9973E+00 0.3783E-01 0.1201E+00 410048 0.1468 0.1914 0.1182E+02 0.3723E+01 0.0000 0.0000 0.1309E+01 1 3 1 1 14 0.4124E+00 0.2149E-01 0.6820E-01 410058 0.1468 0.1914 0.6542E+01 0.2061E+01 0.0000 0.0000 0.7240E+00 1 3 1 1 14 0.2281E+00 0.2205E-01 0.6999E-01 410068 0.1468 0.1914 0.3677E+01 0.1158E+01 0.0000 0.0000 0.4026E+00 1 3 1 1 14 0.1268E+00 0.1436E-01 0.4558E-01 410078 0.1468 0.1914 0.4634E+01 0.1460E+01 0.0000 0.0000 0.6384E+00 1 3 1 1 14 0.2011E+00 0.1226E-01 0.3892E-01 410088 0.1468 0.1914 0.1841E+01 0.5800E+00 0.0000 0.0000 0.2733E+00 1 3 1 1 14 0.8608E-01 0.3838E-02 0.1219E-01 410098 0.1468 0.1914 0.8639E+00 0.2721E+00 0.0000 0.0000 0.1984E+00 1 3 1 1 14 0.6251E-01 0.8717E-02 0.2767E-01 410108 0.1468 0.1914 0.4725E+00 0.1488E+00 0.0000 0.0000 0.1673E+00 1 3 1 1 14 0.5269E-01 0.3392E-02 0.1077E-01 410118 0.1468 0.1914 0.2665E+00 0.8396E-01 0.0000 0.0000 0.1270E+00 1 3 1 1 14 0.4001E-01 0.3724E-02 0.1182E-01 410128 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410138 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410148 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410158 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410168 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410178 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 410188 0.1468 0.1914 0.1487E+00 0.4685E-01 0.0000 0.0000 0.1344E+00 1 3 1 1 14 0.4233E-01 0.3433E-02 0.1090E-01 % 18 18 0201 R 6.3 89 410018 0.5838 0.3232 0.2141E+03 0.6745E+02 0.0000 0.0000 0.2061E+02 1 3 1 1 14 0.6491E+01 0.5694E+00 0.1808E+01 410028 0.5838 0.3232 0.8457E+02 0.2664E+02 0.0000 0.0000 0.8381E+01 1 3 1 1 14 0.2641E+01 0.7158E-01 0.2272E+00 410038 0.5838 0.3232 0.3895E+02 0.1227E+02 0.0000 0.0000 0.3800E+01 1 3 1 1 14 0.1197E+01 0.7391E-01 0.2345E+00 410048 0.5838 0.3232 0.2098E+02 0.6610E+01 0.0000 0.0000 0.1423E+01 1 3 1 1 14 0.4481E+00 0.4579E-01 0.1454E+00 410058 0.5838 0.3232 0.1162E+02 0.3659E+01 0.0000 0.0000 0.7178E+00 1 3 1 1 14 0.2261E+00 0.1908E-01 0.6056E-01 410068 0.5838 0.3232 0.6527E+01 0.2056E+01 0.0000 0.0000 0.3923E+00 1 3 1 1 14 0.1236E+00 0.5542E-02 0.1759E-01 410078 0.5838 0.3232 0.8228E+01 0.2592E+01 0.0000 0.0000 0.1539E+01 1 3 1 1 14 0.4845E+00 0.3164E-01 0.1004E+00 410088 0.5838 0.3232 0.3269E+01 0.1030E+01 0.0000 0.0000 0.4752E+00 1 3 1 1 14 0.1497E+00 0.8144E-02 0.2585E-01 410098 0.5838 0.3232 0.1534E+01 0.4831E+00 0.0000 0.0000 0.2478E+00 1 3 1 1 14 0.7805E-01 0.3179E-02 0.1009E-01 410108 0.5838 0.3232 0.8388E+00 0.2642E+00 0.0000 0.0000 0.1543E+00 1 3 1 1 14 0.4858E-01 0.2743E-02 0.8708E-02 410118 0.5838 0.3232 0.4732E+00 0.1491E+00 0.0000 0.0000 0.1429E+00 1 3 1 1 14 0.4501E-01 0.1821E-02 0.5782E-02 410128 0.5838 0.3232 0.2641E+00 0.8318E-01 0.0000 0.0000 0.1293E+00 1 3 1 1 14 0.4072E-01 0.1263E-02 0.4009E-02 410138 0.5838 0.3232 0.3257E+00 0.1026E+00 0.0000 0.0000 0.1231E+00 1 3 1 1 14 0.3879E-01 0.4180E-02 0.1327E-01 410148 0.5838 0.3232 0.1286E+00 0.4052E-01 0.0000 0.0000 0.1324E+00 1 3 1 1 14 0.4171E-01 0.1998E-02 0.6344E-02 410158 0.5838 0.3232 0.5925E-01 0.1866E-01 0.0000 0.0000 0.1287E+00 1 3 1 1 14 0.4054E-01 0.4778E-02 0.1517E-01 410168 0.5838 0.3232 0.3192E-01 0.1005E-01 0.0000 0.0000 0.1312E+00 1 3 1 1 14 0.4134E-01 0.3160E-02 0.1003E-01 410178 0.5838 0.3232 0.1767E-01 0.5565E-02 0.0000 0.0000 0.1173E+00 1 3 1 1 14 0.3697E-01 0.4552E-02 0.1446E-01 410188 0.5838 0.3232 0.9928E-02 0.3127E-02 0.0000 0.0000 0.1117E+00 1 3 1 1 14 0.3519E-01 0.4525E-02 0.1436E-01 % 18 18 AD01 G 6.3 89 410018 0.2552 0.4446 0.4029E+03 0.1269E+03 0.0000 0.0000 0.7063E+02 1 3 1 0 14 0.2225E+02 0.1304E+01 0.4141E+01 410028 0.2552 0.4446 0.1591E+03 0.5012E+02 0.0000 0.0000 0.1980E+02 1 3 1 0 14 0.6238E+01 0.3039E+00 0.9646E+00 410038 0.2552 0.4446 0.7329E+02 0.2309E+02 0.0000 0.0000 0.7890E+01 1 3 1 0 14 0.2485E+01 0.9405E-01 0.2986E+00 410048 0.2552 0.4446 0.3948E+02 0.1244E+02 0.0000 0.0000 0.4147E+01 1 3 1 0 14 0.1306E+01 0.1245E+00 0.3952E+00 410058 0.2552 0.4446 0.2185E+02 0.6884E+01 0.0000 0.0000 0.2037E+01 1 3 1 0 14 0.6415E+00 0.2602E-01 0.8259E-01 410068 0.2552 0.4446 0.1228E+02 0.3868E+01 0.0000 0.0000 0.8777E+00 1 3 1 0 14 0.2765E+00 0.5557E-02 0.1764E-01 410078 0.2552 0.4446 0.1548E+02 0.4876E+01 0.0000 0.0000 0.1668E+01 1 3 1 0 14 0.5254E+00 0.5088E-01 0.1615E+00 410088 0.2552 0.4446 0.6150E+01 0.1937E+01 0.0000 0.0000 0.5103E+00 1 3 1 0 14 0.1607E+00 0.9218E-02 0.2926E-01 410098 0.2552 0.4446 0.2886E+01 0.9090E+00 0.0000 0.0000 0.3583E+00 1 3 1 0 14 0.1129E+00 0.3924E-02 0.1246E-01 410108 0.2552 0.4446 0.1578E+01 0.4971E+00 0.0000 0.0000 0.2461E+00 1 3 1 0 14 0.7751E-01 0.7864E-02 0.2496E-01 410118 0.2552 0.4446 0.8903E+00 0.2804E+00 0.0000 0.0000 0.2121E+00 1 3 1 0 14 0.6680E-01 0.3724E-02 0.1182E-01 410128 0.2552 0.4446 0.4968E+00 0.1565E+00 0.0000 0.0000 0.1610E+00 1 3 1 0 14 0.5072E-01 0.2592E-02 0.8229E-02 410138 0.2552 0.4446 0.6128E+00 0.1930E+00 0.0000 0.0000 0.2378E+00 1 3 1 0 14 0.7492E-01 0.6336E-02 0.2011E-01 410148 0.2552 0.4446 0.2420E+00 0.7623E-01 0.0000 0.0000 0.2097E+00 1 3 1 0 14 0.6605E-01 0.3027E-02 0.9608E-02 410158 0.2552 0.4446 0.1115E+00 0.3511E-01 0.0000 0.0000 0.2011E+00 1 3 1 0 14 0.6336E-01 0.3805E-02 0.1208E-01 410168 0.2552 0.4446 0.6005E-01 0.1891E-01 0.0000 0.0000 0.2022E+00 1 3 1 0 14 0.6368E-01 0.1096E-02 0.3480E-02 410178 0.2552 0.4446 0.3324E-01 0.1047E-01 0.0000 0.0000 0.2096E+00 1 3 1 0 14 0.6602E-01 0.7244E-02 0.2300E-01 410188 0.2552 0.4446 0.1868E-01 0.5884E-02 0.0000 0.0000 0.1841E+00 1 3 1 0 14 0.5798E-01 0.1602E-02 0.5085E-02 ] def /cvishow {cvi 10 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 %%EndProlog gsave /lanind 1 def /lantex [(G) (E) (S) (F) (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 /showea {1 lanind le {show} {pop} ifelse} bind def /lanindf where {pop /lanind1 lanindf def /lanind2 lanindf def /lanindd laninddf def} {/lanind1 1 def /lanind2 1 def} ifelse /colormf where {pop /colorm1 colormf def /colorm2 colormf def /colorMD colormdf def} {/colorm1 0 def} ifelse /deintpf where {pop /deintp1 deintpf def /deintp2 deintpf def /deintpd deintpdf def} {/deintp1 0 def} ifelse /xcolorf where {pop /xcolor1 xcolorf def /xcolor2 xcolorf def /xcolord xcolordf def} {/xcolor1 3 def} ifelse /xchartf where {pop /xchart1 xchartf def /xchart2 xchartf def /xchartd xchartdf def /xchartm xchart2f xchart1f sub 1 add def} {/xchart1 0 def /xchartm 1 def} ifelse /xchart3f where {pop /xchart3 xchart3f def} {/xchart3 0 def} ifelse /xchart4f where {pop /xchart4 xchart4f def} {/xchart4 0 def} ifelse /pchartf where {pop /pchart1 pchartf def /pchart2 pchartf def /pchartd pchartdf def} {/pchart1 3 def} ifelse /colsepf where {pop /colsep1 colsepf def /colsep2 colsepf def /colsepd colsepdf def} {/colsep1 0 def} ifelse /pmetamf where {pop /pmetam1 pmetamf def /pmetam2 pmetamf def /pmetaMD pmetamdf def} {/pmetam1 0 def} ifelse %either defaul values for xchart=0 or values for xchart=1 /lanind lanind1 def % /colorm colorm1 def % /deintp deintp1 def % /xcolor xcolor1 def % /xchart xchart1 def % /pchart pchart1 def % /colsep colsep1 def % /pmetam pmetam1 def % colorm 0 eq deintp 0 eq and {/Txx (d) def /Fxx (d) def} if %colorm=0, deintp=0 colorm 0 eq deintp 1 eq and {/Txx (e) def /Fxx (e) def} if %colorm=0, deintp=1 colorm 1 eq deintp 0 eq and {/Txx (dd) def /Fxx (d) def} if %colorm=1, deintp=0 colorm 1 eq deintp 1 eq and {/Txx (de) def /Fxx (e) def} if %colorm=1, deintp=1 xchart 0 eq {/Txx (-) def /Fxx (-) def} if %always independent of intended output gsave /xchartl xchart def %0 1 3 {/xchart exch def %xchart=0,2 1x3 plots /xchart xchart def %0,1,2 for plots log dL, log L/dL, L/dL gsave 5 /Times-ISOL1 FS /cvishow {cvi 6 string cvs show} def %75 85 moveto %lanind cvishow (-) show %colorm cvishow %deintp cvishow %xcolor cvishow %xchart cvishow %pchart cvishow %colsep cvishow (-L) show pmetam cvishow 5 /Times-ISOL1 FS 175 85 moveto (UE490-7N) show %xchart 0 eq {(R) show} % {deintp colorm 2 mul add cvishow} ifelse 72 90 translate 0.01 MM dup scale 30 setlinewidth /IMDAT 16 array def /IMDAT %data of curve, 6, 12 or 18 values [17 17 17 17 17 17 17 17 17 17 17 17 17 17 17 17] def 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 0 1 15 {/xchartl exch def %xchartl=0,04 gsave xchartl 00 ge xchartl 04 le and {/MDK 0 def} if xchartl 05 ge xchartl 09 le and {/MDK 1 def} if xchartl 10 ge xchartl 14 le and {/MDK 2 def} if xchartl 15 eq {/MDK 3 def} if /MD MDK def /xchartl5 xchart xchart 5 idiv 5 mul sub def 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 translate} if xchartl 7 eq { 6100 0250 translate} if xchartl 8 eq {13500 13000 translate} if xchartl 9 eq {19500 13000 translate} if xchartl 10 eq {13500 08750 translate} if xchartl 11 eq {19500 08750 translate} if xchartl 12 eq {13500 4500 translate} if xchartl 13 eq {19500 4500 translate} if xchartl 14 eq {13500 0250 translate} if xchartl 15 eq {19500 0250 translate} if /xwidth 5400 def /ywidth 4000 def 0 0 xwidth ywidth 0.0 0.0 0.0 0.5 colrecfi %Rechteck Mittelgrau 150 /Times-ISOL1 FS 0 setgray 300 -150 moveto xchartl 7 le {(UE490-) show} {(UE491-) show} ifelse xchartl 0 ge xchartl 7 le and {xchartl 1 add cvishow} if xchartl 8 ge xchartl 15 le and {xchartl 7 sub cvishow} if (N) show %N (_) show xchart 1 add cvishow 0 setlinewidth 0 0 moveto xwidth 0 rlineto 0 ywidth rlineto xwidth neg 0 rlineto closepath clip 20 setlinewidth 0 0 xwidth ywidth 0.0 0.0 0.0 1.0 colrecst %frame black %******************************************** /xt0 50 def /yt0 3750 def /xt1 1000 def /xt2 1250 def /ytd 250 def xt0 yt0 moveto TBM tfw xchart 0 eq {%xchart=0 TBM (log ) show SM (D) show TBIM (L ) show TBM (luminance difference) showen (Leuchtdichte\255Diffenz\255) showde xt1 yt0 ytd 1 mul sub moveto TBM (threshold) showen TBM (renzschwelle) showde } if %xchart=0 xchart 1 eq {%xchart=1 TBM (log\050) show TBIM (L/) show SM (D) show TBIM (L) show TBM (\051 ) show (luminance contrast) showen (Leuchtdichte\255Kontrast\255) showde xt2 yt0 ytd 1 mul sub moveto TBM (sensitivity threshold) showen TBM (Empfindlichkeitsschwelle) showde } if %xchart=1 xchart 2 eq {%xchart=2 TBIM (L/) show SM (D) show TBIM (L ) show TBM (luminance contrast) showen (Leuchtdichte\255Kontrast\255) showde xt1 150 sub yt0 ytd 1 mul sub moveto TBM (sensitivity threshold) showen TBM (Empfindlichkeitsschwelle) showde } if %xchart=2 xchart 3 eq {%xchart=3 TBIM (T* ) show TBM (luminance difference) showen (Leuchtdichte\255Diffenz\255) showde xt0 400 add yt0 ytd 1 mul sub moveto TBM (threshold sum) showen TBM (renzschwellensumme) showde } if %xchart=3 tfn xchart 0 eq {/xa1 2500 def} %for tables {/xa1 200 def} ifelse /ishowg {0 -50 rmoveto TBM (g) show 0 50 rmoveto} def /ishowp {0 -50 rmoveto TBM (p) show 0 50 rmoveto} def newpath /xa2 3950 def /ya2 yt0 100 sub def xa2 100 sub ya2 130 add 50 00 360 arc fill newpath tfw xa2 ya2 moveto TBIK (L) show ishowg TBK (=) ns xchartl 00 ge xchartl 04 le and {(630cd/m) ns4 (2) es4} if xchartl 05 ge xchartl 09 le and {(63cd/m) ns4 (2) es4} if xchartl 10 ge xchartl 14 le and {(6,3cd/m) ns4 (2) es4} if xchartl 15 eq {(63cd/m) ns4 (2) es4} if tfw 550 400 translate 50 setlinewidth 0 0 moveto 700 6 mul 0 rlineto stroke 0 0 moveto 0 700 4 mul rlineto stroke tfg [100] 0 setdash 2.885 700 mul 0 moveto 5.447 700 mul 0 lineto stroke [ ] 0 setdash tfw TBM /tx [(-3) (-2) (-1) ( 0) ( 1) ( 2) ( 3)] def /ty [(-2) (-1) ( 0) ( 1) ( 2) ( 3)] def /ty5 [( 0) (10) (20) (30) (40) (50) (60) (70)] def /ty6 [( 0) (20) (40) (60) (80) (100) (120) (140)] def %!x-Achse: 1 log-Einheiten = 700 Skalen-Einheiten 0 1 5 {/i exch def /ixt { -250 i 0700 mul add} def /ixl { 000 i 0700 mul add} def ixt -350 moveto tx i get exec show ixl 75 moveto 0 -150 rlineto stroke } for %!y-Achse: 1 log-Einheiten = 700 Skalen-Einheiten 0 1 4 {/i exch def /iyt {-120 i 0700 mul add} def /iyl { 000 i 0700 mul add} def xchart 1 le {%xchart<=1 -450 iyt moveto ty i get exec show } if %xchart<=1 xchart 2 eq {%xchart=2 -450 iyt moveto ty5 i get exec show } if %xchart=2 xchart 3 eq {%xchart=3 -450 iyt moveto ty6 i get exec show } if %xchart=3 -75 iyl moveto 150 0 rlineto stroke } for 50 setlinewidth 3900 -250 moveto (x) TBIM tfw show 20 0 rmoveto (=) TBM tfw show 20 0 rmoveto (log) TBM tfw show 30 0 rmoveto TBIM (L) show /ishow {0 -50 rmoveto TBM show 0 50 rmoveto} def /eshow {0 100 rmoveto TBM show 0 -100 rmoveto} def /ip {0 50 rmoveto TBM (\267) show 0 -50 rmoveto} def /A1 33 array def %for 11 data sets for 3 illuminants (630, 63, 6.3cd/m**2) /A2 33 array def /A3 33 array def /A4 33 array def /ALPHA 33 array def %produced with RUN/OUTPUT=UK41_HPPOT5M2_L5.LIS output of UK41_HPPOT5M2_L5.FOR %wait after process start about 3 minutes, use TYPE AUAV_HPPOT5M2_L1.LIS %Least square fit of 3 parameters A1 to A3, stop with data of AD 26 R %UK49_HPPOT5M2_L5.FOR, IN/OUT UK49_HPPOT5M2_L5.DAT'/.TXT/.LIS % %%UK49_HPPOT5M2_L5.DAT <- UK41_HPPOT5M2_L5.DAT % %% CREATED BY DAAV_AVR2DA08.FOR, AND COPY DAAV_AVR2DA08.TXT DAAV_AVRMDA08.T % %% Steering: (IDATA(I),I=1,5),xyYLcx,xyYLgi,CIELAB,LABJND 1 0 0 0 1 % %% Steering: (IEDAT(I),I=1,5),M1,M2,M3,Ma,Mi 0 0 0 1 0 % %% Programm: AVR2DA08.FOR Output file: AVR2DA08.TXT 2014_01_03 % %% 1 % %%1234567890123456789012345678901234567890123456789012345678901234567890123 % %%410000 x y Y L delta_x delta_y delta_Y ObReJNSu_ %EQUATIONS USED %XYI=A1+A3*Y(I) %F(I)=XYI**A2 %A(I,1)=A2*XYI**(A2-1)*A1 %C d/dx a**x = a**x * ln(a) %A(I,2)=XYI**A2*ALOG(XYI) %A(I,3)=A2*XYI**(A2-1.)*Y(I) %A(I,JMP)=log[V(I)]-log[F(I)] % % 18 12 0401 A 630.0 89,LM0,KX,JM,JNR,IM: 40 99 3 0 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.3561E+00 %END ALPHA= 0.1109E-02 ALPHA 0 0.1109E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.5115E-04 0.9876E-04 -0.1194E-04 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1457E+01 0.1006E+01 0.3567E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 0 def /X0K0 10 array def /X0K0 [ 0.1457E+01 0.1006E+01 0.3567E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 0201 Y 630.0 89,LM0,KX,JM,JNR,IM: 40 99 3 1 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.8468E+00 %END ALPHA= 0.1874E-02 ALPHA 1 0.1874E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.2352E-04 0.9869E-04 -0.1246E-04 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1696E+01 0.9327E+00 0.3914E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 1 def /X0K1 10 array def /X0K1 [ 0.1696E+01 0.9327E+00 0.3914E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 6 0201 B 630.0 89,LM0,KX,JM,JNR,IM: 40 99 3 2 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.7784E+00 %END ALPHA= 0.2166E-04 ALPHA 2 0.2166E-04 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.9820E-04 0.2288E-05 -0.4812E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1942E+01 0.5387E+00 0.2485E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 2 def /X0K2 10 array def /X0K2 [ 0.1942E+01 0.5387E+00 0.2485E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 0201 R 630.0 89,LM0,KX,JM,JNR,IM: 40 99 3 3 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1009E+01 %END ALPHA= 0.5364E-03 ALPHA 3 0.5364E-03 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.2418E-04 0.9979E-04 -0.3426E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.9573E+00 0.1318E+01 0.2521E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 3 def /X0K3 10 array def /X0K3 [ 0.9573E+00 0.1318E+01 0.2521E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 AD01 G 630.0 89,LM0,KX,JM,JNR,IM: 40 99 3 4 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1205E+01 %END ALPHA= 0.1903E-03 ALPHA 4 0.1903E-03 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.9859E-04 0.7279E-05 -0.1932E-04 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1966E+01 0.5700E+00 0.4568E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 4 def /X0K4 10 array def /X0K4 [ 0.1966E+01 0.5700E+00 0.4568E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 18 0401 A 63.0 89,LM0,KX,JM,JNR,IM: 40 99 3 5 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1490E+00 %END ALPHA= 0.3325E-02 ALPHA 5 0.3325E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.4049E-04 0.9902E-04 -0.3757E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.4209E+00 0.1540E+01 0.2461E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 5 def /X0K5 10 array def /X0K5 [ 0.4209E+00 0.1540E+01 0.2461E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 18 0201 Y 63.0 89,LM0,KX,JM,JNR,IM: 40 99 3 6 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.2137E+00 %END ALPHA= 0.3645E-02 ALPHA 6 0.3645E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.3956E-04 0.9872E-04 -0.4751E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.3460E+00 0.1298E+01 0.3443E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 6 def /X0K6 10 array def /X0K6 [ 0.3460E+00 0.1298E+01 0.3443E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 0201 B 63.0 89,LM0,KX,JM,JNR,IM: 40 99 3 7 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.2620E+00 %END ALPHA= 0.2847E-03 ALPHA 7 0.2847E-03 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.9262E-04 0.9836E-04 -0.1135E-04 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1747E+00 0.9566E+00 0.1042E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 7 def /X0K7 10 array def /X0K7 [ 0.1747E+00 0.9566E+00 0.1042E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 0201 R 63.0 89,LM0,KX,JM,JNR,IM: 40 99 3 8 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1170E+00 %END ALPHA= 0.2013E-02 ALPHA 8 0.2013E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.3601E-04 0.9903E-04 -0.7239E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1534E+00 0.1088E+01 0.7867E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 8 def /X0K8 10 array def /X0K8 [ 0.1534E+00 0.1088E+01 0.7867E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 AD01 G 63.0 89,LM0,KX,JM,JNR,IM: 40 99 3 9 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1767E+00 %END ALPHA= 0.1377E-02 ALPHA 9 0.1377E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.5310E-04 0.9920E-04 -0.1067E-04 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1960E+00 0.9866E+00 0.6984E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 9 def /X0K9 10 array def /X0K9 [ 0.1960E+00 0.9866E+00 0.6984E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 04 KR01 A 6.3 89,LM0,KX,JM,JNR,IM: 40 99 3 10 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.3961E-01 %END ALPHA= 0.4869E-02 ALPHA 10 0.4869E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.2490E-04 0.9857E-04 -0.7309E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1108E+00 0.1288E+01 0.6471E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 10 def /X0K10 10 array def /X0K10 [ 0.1108E+00 0.1288E+01 0.6471E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 18 0201 Y 6.3 89,LM0,KX,JM,JNR,IM: 40 99 3 11 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.3828E-01 %END ALPHA= 0.4419E-02 ALPHA 11 0.4419E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.2709E-04 0.9875E-04 -0.5952E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1359E+00 0.1387E+01 0.7267E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 11 def /X0K11 10 array def /X0K11 [ 0.1359E+00 0.1387E+01 0.7267E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 12 0201 B 6.3 89,LM0,KX,JM,JNR,IM: 40 99 3 12 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.7288E-02 %END ALPHA= 0.8672E-03 ALPHA 12 0.8672E-03 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.1620E-04 0.9890E-04 0.5193E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.7293E-01 0.1247E+01 0.1201E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 12 def /X0K12 10 array def /X0K12 [ 0.7293E-01 0.1247E+01 0.1201E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 18 0201 R 6.3 89,LM0,KX,JM,JNR,IM: 40 99 3 13 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.1518E-01 %END ALPHA= 0.1120E-01 ALPHA 13 0.1120E-01 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.1425E-04 0.9846E-04 -0.9758E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.4703E-01 0.1081E+01 0.8380E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 13 def /X0K13 10 array def /X0K13 [ 0.4703E-01 0.1081E+01 0.8380E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def % % 18 18 AD01 G 6.3 89,LM0,KX,JM,JNR,IM: 40 99 3 14 18 % %LM0,KX,JM,(%BEG X0K(J),J=1,10): 40 99 3 % 0.3050E-01 0.9600E+00 0.1000E+00 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %BEG ALPHA= 0.2430E-01 %END ALPHA= 0.2620E-02 ALPHA 14 0.2620E-02 put % %LM0,KX,JM,(%END X(J),J=1,10): 40 99 3 % 0.2760E-04 0.9845E-04 -0.3742E-05 -0.1000E+01 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 % %LM0,KX,JM,(%END X0K(J),J=1,10): 40 99 3 % 0.1154E+00 0.1322E+01 0.8188E-01 0.0000E+00 0.0000E+00 % 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 %END /JNR 14 def /X0K14 10 array def /X0K14 [ 0.1154E+00 0.1322E+01 0.8188E-01 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 ] def /X0K 10 array def 0 1 9 {/j exch def %j=0,9 xchartl 00 eq {X0K j X0K0 j get put} if %0426 A 630 xchartl 01 eq {X0K j X0K1 j get put} if %0226 Y xchartl 02 eq {X0K j X0K2 j get put} if %0226 B xchartl 03 eq {X0K j X0K3 j get put} if %0226 R xchartl 04 eq {X0K j X0K4 j get put} if %AD26 G xchartl 05 eq {X0K j X0K5 j get put} if %0426 A 63 xchartl 06 eq {X0K j X0K6 j get put} if %0226 Y xchartl 07 eq {X0K j X0K7 j get put} if %0226 B xchartl 08 eq {X0K j X0K8 j get put} if %0226 R xchartl 09 eq {X0K j X0K9 j get put} if %AD26 G xchartl 10 eq {X0K j X0K10 j get put} if %0426 A 6.3 xchartl 11 eq {X0K j X0K11 j get put} if %0226 Y xchartl 12 eq {X0K j X0K12 j get put} if %0226 B xchartl 13 eq {X0K j X0K13 j get put} if %0226 R xchartl 14 eq {X0K j X0K14 j get put} if %AD26 G xchartl 15 eq {X0K j X0K5 j get put} if %0426 A 63 } for %j=0,9 /A1 X0K 0 get def /A2 X0K 1 get def /A3 X0K 2 get def %/A4 X0K 3 get def %/A5 X0K 4 get def %/A6 X0K 5 get def %/A7 X0K 6 get def %/A8 X0K 7 get def %/A9 X0K 8 get def /yd 300 def %xchart 0 eq %xchart 2 eq or %xchart 3 eq or {%xchart=0,2,3 %table 1 left /xt10 200 def /xt11 500 def /xt12 1100 def /yt10 2750 def %table 2 right /xt20 1800 def /yt20 2350 def %} if %xchart=0,2 %xchart 1 eq {%xchart=1 %table 1 left %/xt10 200 def %3200 def %/xt11 3500 def %/xt12 4100 def %/yt10 2050 def %table 2 left %/xt20 200 def %/yt20 2000 def %} if %xchart=1 xt10 yt10 yd 0 mul sub moveto xchartl 00 eq {(04 0,1s A 630) show} if xchartl 01 eq {(02 0,1s Y 630) show} if xchartl 02 eq {(02 0,1s B 630) show} if xchartl 03 eq {(02 0,1s R 630) show} if xchartl 04 eq {(AD 0,1s G 630) show} if xchartl 05 eq {(04 0,1s A 63) show} if xchartl 06 eq {(02 0,1s Y 63) show} if xchartl 07 eq {(02 0,1s B 63) show} if xchartl 08 eq {(02 0,1s R 63) show} if xchartl 09 eq {(AD 0,1s G 63) show} if xchartl 10 eq {(04 0,1s A 6,3) show} if xchartl 11 eq {(02 0,1s Y 6,3) show} if xchartl 12 eq {(02 0,1s B 6,3) show} if xchartl 13 eq {(02 0,1s R 6,3) show} if xchartl 14 eq {(AD 0,1s G 6,3) show} if xchartl 15 eq {(04 0,1s A&G 63) show} if (cd/m) show (2) eshow (; pot3) showen (; pot3) showde tfn xt10 yt10 yd 1.3 mul sub moveto xchartl5 0 eq {%(dL=[A1+A3*X]**A2 (D) ss2 (L) js2 ( = [) bs2 (A) js2 (1) is2 ( + A) js2 (3) is2 ip2 (L) js2 ( ]) bs2 (t) es2 } if xchartl5 1 eq {%(L/dL=L/[A1+A3*X]**A2) show (log\050) bs2 (L/) js2 (D) ss2 (L) js2 (\051 = ) bs2 (L) js2 ( / [) bs2 (A) js2 (1) is2 ( + A) js2 (3) is2 ip2 (L) js2 ( ]) bs2 (t) es2 } if xchartl5 2 eq {%(L/dL=L/dL=L/[A1+A3*X]**A2) show (L/) js2 (D) ss2 (L) js2 ( = ) bs2 (L) js2 ( / [) bs2 (A) js2 (1) is2 ( + A) js2 (3) is2 ip2 (L) js2 ( ]) bs2 (t) es2 } if xchartl5 3 eq {(T*) js2 ( = [) bs2 (A) js2 (1) is2 ( + ) bs2 (A) js2 (3) ip2 (L) js2 (]) bs2 (t) es2 ( - 1) bs2 } if xchartl 14 le {/xchartx xchartl def} if xchartl 15 eq {/xchartx 5 def} if xt10 yt10 yd 2.5 mul sub moveto (A) ks4 (1) is4 (=) ns4 X0K 0 get cvsshow2 xt10 yt10 yd 3.5 mul sub moveto (A) ks4 (2) is4 (=) ns4 X0K 1 get cvsshow2 (=) ns4 (t) ks4 xt10 yt10 yd 4.5 mul sub moveto (A) ks4 (3) is4 (=) ns4 X0K 2 get cvsshow2 %(=) ns4 (t) ks4 %xt10 yt10 yd 5.5 mul sub moveto (A) ks4 (6) is4 (=) ns4 X0K 5 get cvsshow2 %xt10 yt10 yd 6.5 mul sub moveto (A) ks4 (7) is4 (=) ns4 X0K 6 get cvsshow2 xt10 yt10 yd 5.5 mul sub moveto (D) ss4 (=) ns4 ALPHA xchartx get cvsshow3 newpath /xfact 700 def /yfact 700 def xchartl5 2 eq {/yfact 70 def} if xchartl5 3 eq {/yfact 35 def} if tfn MDK 0 eq {630} if MDK 1 eq {63} if MDK 2 eq {6.3} if MDK 3 eq {63} if log 3 add xfact mul 0 50 00 360 arc fill /xgr 33 array def /ygr 33 array def /ygs 33 array def /ygp 33 array def /ygm 33 array def /ver {00 -70 rmoveto 0 140 rlineto stroke} def /hor {-70 0 rmoveto 140 0 rlineto stroke} def /dgr {-50 -50 rmoveto 100 100 rlineto stroke} def /dgl {-50 50 rmoveto 100 -100 rlineto stroke} def /xs2 2 def /ys2 2 def /xs3 3 def /ys3 3 def /IM 32 def /JM 00 def %for this file: %For array: 4320=16*18*5*3=1440*3 % =%16 data * 18 colours * 5 series * 3 luminances %/MDX 16 18 mul 11 mul def %1440=16*18*5 /k16_18 16 18 xchartx mul mul def % MD MDX mul add def %16 data * 18 colours * 5 series xchartl 00 eq {/tfx {tfh} def} if %630cd/m**2 xchartl 01 eq {/tfx {tfy} def} if %630cd/m**2 xchartl 02 eq {/tfx {tfb} def} if %630cd/m**2 xchartl 03 eq {/tfx {tfr} def} if %630cd/m**2 xchartl 04 eq {/tfx {tfg} def} if %630cd/m**2 xchartl 05 eq {/tfx {tfw} def} if %63cd/m**2 xchartl 06 eq {/tfx {tfy} def} if %63cd/m**2 xchartl 07 eq {/tfx {tfb} def} if %63cd/m**2 xchartl 08 eq {/tfx {tfr} def} if %63cd/m**2 xchartl 09 eq {/tfx {tfg} def} if %63cd/m**2 xchartl 10 eq {/tfx {tfd} def} if %6,3cd/m**2 xchartl 11 eq {/tfx {tfyz} def} if %6,3cd/m**2 xchartl 12 eq {/tfx {tfbz} def} if %6,3cd/m**2 xchartl 13 eq {/tfx {tfrz} def} if %6,3cd/m**2 xchartl 14 eq {/tfx {tfgz} def} if %6,3cd/m**2 xchartl 15 eq {/tfx {tfw} def} if %630cd/m**2 %xchartl=5 /j 0 def /IM IMDAT xchartx get def 0 1 IM {/i exch def %i=0,IM /j1 i 16 mul 04 add k16_18 add def /j2 i 16 mul 13 add k16_18 add def xgr i AVR2DA05 j1 get put xchart 0 eq {%xchart=0 dL ygr i AVR2DA05 j2 get put } if %xchart=0 dL xchart 1 eq xchart 2 eq or {%xchart=1,2 L/dL log and linear ygr i AVR2DA05 j1 get AVR2DA05 j2 get div put } if %xchart=0 L/dL } for %i=0,IM xchart 2 le {%xchart<=2, single data plot T* not possible 0 1 IM {/i exch def %i=0,IM i 05 le i 12 ge or {tfn} {tfx} ifelse xgr i get log xs3 add xfact mul ygr i get 0.001 add xchart 1 le {log} if ys2 add yfact mul moveto dgr i 05 le i 12 ge or {tfx} {tfn} ifelse xgr i get log xs3 add xfact mul ygr i get 0.001 add xchart 1 le {log} if ys2 add yfact mul moveto dgl } for %i=0,IM } if %xchart<=2 %************************************************************* /iout0 1 def iout0 1 eq {%iout0=1 tfx 0 1 IM {/i exch def %i=0,IM /X xgr i get def /XX A1 A3 X mul add def /FDL XX A2 exp def /FLDDL X FDL 0.0001 add div def /FR XX A2 1 add exp 1 sub def xgr i get log xs3 add xfact mul xchart 0 eq {FDL log ys2 add yfact mul} if xchart 1 eq {FLDDL 0.001 add log ys2 add yfact mul} if xchart 2 eq {FLDDL 0.001 add ys2 add yfact mul} if xchart 3 eq {FR ys2 add yfact mul} if i 0 eq {moveto} if i 01 ge i IM 1 sub le and {lineto} if i IM eq {lineto stroke} if } for %i=0,IM %STOP2 %*********************************************************** /iout 1 def iout 1 eq {%iout=1 xchartl 15 ge {%BEG second curve xchartl 15 eq {/xchartx 9 def} if %AD26 G /k16_18 16 18 xchartx mul mul def % MD MDX mul add def %16 data * 18 colours * 5 series * 3 luminances xchartl 15 eq {/tfx {tfg } def} if %xchartl=9 /j 0 def /IM IMDAT xchartx get def 0 1 IM {/i exch def %i=0,IM /j1 i 16 mul 04 add k16_18 add def /j2 i 16 mul 13 add k16_18 add def xgr i AVR2DA05 j1 get put xchart 0 eq {%xchart=0 dL ygr i AVR2DA05 j2 get put } if %xchart=0 dL xchart 1 eq xchart 2 eq or {%xchart=1,2 L/dL log and linear ygr i AVR2DA05 j1 get AVR2DA05 j2 get div put } if %xchart=0 L/dL } for %i=0,IM xchart 2 le {%xchart<=2, single data plot T* not possible 0 1 IM {/i exch def %i=0,IM i 05 le i 12 ge or {tfn} {tfx} ifelse xgr i get log xs3 add xfact mul ygr i get 0.001 add xchart 1 le {log} if ys2 add yfact mul moveto dgr i 05 le i 12 ge or {tfx} {tfn} ifelse xgr i get log xs3 add xfact mul ygr i get 0.001 add xchart 1 le {log} if ys2 add yfact mul moveto dgl } for %i=0,IM } if %xchart<=2, single data plot T* not possible } if %iout0=1 %************************************************************* %FOR SECOND CURVE FIT GREEN no. 9 xchartl 15 eq {%xchartl=15 0 1 9 {/j exch def %j=0,9 xchartl 15 eq {X0K j X0K9 j get put} if %AD26 G } for %j=0,9 /xt1x xt10 1200 add def tfn xt1x yt10 yd 2.5 mul sub moveto (A) ks4 (1) is4 (=) ns4 X0K 0 get cvsshow2 xt1x yt10 yd 3.5 mul sub moveto (A) ks4 (2) is4 (=) ns4 X0K 1 get cvsshow2 (=) ns4 (t) ks4 xt1x yt10 yd 4.5 mul sub moveto (A) ks4 (3) is4 (=) ns4 X0K 2 get cvsshow2 %(=) ns4 (t) ks4 %xt1x yt10 yd 5.5 mul sub moveto (A) ks4 (6) is4 (=) ns4 X0K 5 get cvsshow2 %xt1x yt10 yd 6.5 mul sub moveto (A) ks4 (7) is4 (=) ns4 X0K 6 get cvsshow2 xt1x yt10 yd 5.5 mul sub moveto (D) ss4 (=) ns4 ALPHA xchartx get cvsshow3 xchartl 15 eq {/tfx {tfg } def} if /A1 X0K 0 get def /A2 X0K 1 get def /A3 X0K 2 get def tfx 0 1 IM {/i exch def %i=0,IM /X xgr i get def /XX A1 A3 X mul add def /FDL XX A2 exp def /FLDDL X FDL 0.0001 add div def /FR XX A2 1 add exp 1 sub def xgr i get log xs3 add xfact mul xchart 0 eq {FDL log ys2 add yfact mul} if xchart 1 eq {FLDDL 0.001 add log ys2 add yfact mul} if xchart 2 eq {FLDDL 0.001 add ys2 add yfact mul} if xchart 3 eq {FR ys2 add yfact mul} if i 0 eq {moveto} if i 01 ge i IM 1 sub le and {lineto} if i IM eq {lineto stroke} if } for %i=0,IM } if %xchartl=15 } if %END second curve } if %iout=1 550 neg 400 neg translate %special space for 'xm03'PROZ0.COM 2x before/after xchartl 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 grestore } for %xchartl=0,15 showpage grestore %} for %xchart=0,8 for MDK: 0=6,3cd/m**2, 1x3 plots %%Trailer %%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 UE490-8, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE490-8,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-1, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-1,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-2, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-2,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-3N, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-3N,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-4, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-4,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-5, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-5,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-6, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-6,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-7N, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-7N,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 UE491-8, %%BoundingBox: 70 90 226 206 /FS {findfont exch scalefont setfont} bind def /MM {72 25.4 div mul} def %%EndProlog gsave 8 /Times-Roman FS 72 83 moveto %!2 (UE491-8,) show 72 90 translate %! 0.01 MM 0.01 MM scale %! 15 setlinewidth %! 0 0 moveto 5400 0 rlineto 0 4000 rlineto -5400 0 rlineto %! closepath stroke grestore showpage %%Trailer %%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 20070101 %%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 /showea {1 lanind le {show} {pop} ifelse} bind def /lanind1 01 def /lanind2 01 def /lanindd 01 def /colorm1 00 def /colorm2 00 def /colormd 01 def /deintp1 00 def /deintp2 00 def /deintpd 01 def /xcolor1 03 def /xcolor2 03 def /xcolord 01 def /xchart1 00 def /xchart2 00 def /xchartd 01 def /pchart1 00 def /pchart2 00 def /pchartd 01 def /colsep1 00 def /colsep2 00 def /colsepd 01 def /pmetam1 00 def /pmetam2 00 def /pmetamd 01 def /lanindf where {pop /lanind1 lanindf def /lanind2 lanindf def /lanindd laninddf def} if /colormf where {pop /colorm1 colormf def /colorm2 colormf def /colormd colormdf def} if /deintpf where {pop /deintp1 deintpf def /deintp2 deintpf def /deintpd deintpdf def} if /xcolorf where {pop /xcolor1 xcolorf def /xcolor2 xcolorf def /xcolord xcolordf def} if /xchartf where {pop /xchart1 xchartf def /xchart2 xchartf def /xchartd xchartdf def /xchartm xchart2f xchart1f sub 1 add def} {/xchartm 1 def} ifelse /xchart3f where {pop /xchart3 xchart3f def} {/xchart3 1 def} ifelse /xchart4f where {pop /xchart4 xchart4f def} {/xchart4 0 def} ifelse /pchartf where {pop /pchart1 pchartf def /pchart2 pchartf def /pchartd pchartdf def} if /colsepf where {pop /colsep1 colsepf def /colsep2 colsepf def /colsepd colsepdf def} if /pmetamf where {pop /pmetam1 pmetamf def /pmetam2 pmetamf def /pmetamd pmetamdf def} if /lanind lanind1 def % /colorm colorm1 def % /deintp deintp1 def % /xcolor xcolor1 def % /xchart xchart1 def % /pchart pchart1 def % /colsep colsep1 def % /pmetam pmetam1 def % /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 0 def /i*ptrsc 0 def gsave 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 colorm 0 eq deintp 0 eq and {/Txx (d) def /Fxx (d) def} if %colorm=0, deintp=0 colorm 0 eq deintp 1 eq and {/Txx (e) def /Fxx (e) def} if %colorm=0, deintp=1 colorm 1 eq deintp 0 eq and {/Txx (dd) def /Fxx (d) def} if %colorm=1, deintp=0 colorm 1 eq deintp 1 eq and {/Txx (de) def /Fxx (e) def} if %colorm=1, deintp=1 xchart 0 eq {/Txx (-) def /Fxx (-) def} if xchart 1 ge {%xchart>=1 /i0 12 def /i1 i0 1 add def /i2 i0 2 add def /i3 i0 3 add def 2.5 MM /Times-ISOL1 FS x i0 get MM 40 MM add y i0 get MM 1 MM sub moveto lanind cvishow (-) show colorm cvishow deintp cvishow xcolor cvishow xchart cvishow pchart cvishow colsep cvishow (-F) show pmetam cvishow } if %xchart>=1 /xt 1 def xchart 1 eq {/xt 1 def} if xt 0 eq {%xt=0,1 ifelse /i0 12 def /i1 i0 1 add def /i2 i0 2 add def /i3 i0 3 add def 2.5 MM /Times-ISOL1 FS x i0 get MM 110 MM add y i0 get MM 1 MM sub moveto (http://130.149.60.45/~farbmetrik/UE49/UE49) show colorm cvishow deintp cvishow colorm 0 eq {(N) show} {(F) show} ifelse (P.PDF & ) show (http://130.149.60.45/~farbmetrik/UE49/UE49) show colorm cvishow deintp cvishow colorm 0 eq {(N) show} {(F) show} ifelse (P.TXT & ) show (http://130.149.60.45/~farbmetrik/UE49/UE49.HTM) show } %xt=0 { %xt=1 /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 16 MM rlineto stroke xro 8 MM add yro moveto -16 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 13.5 MM moveto (TUB\255Pr\374fvorlage UE49; ) showde %0UE49X-Y 0000# (TUB\255test chart UE49; ) showen %1UE49X-Y 0000# (gr\341fico TUB\255UE49; ) showes %2UE49X-Y 0000# (TUB\255test graphique UE49; ) showfr %3UE49X-Y 0000# (grafico TUB\255UE49; ) showit %4UE49X-Y 0000# (TUB\255test chart UE49; ) showjp %5UE49X-Y 0000# (Schwellendaten ) showde %0UE49X-Y 0100# (threshold data ) showea %1UE49X-Y 0100# 12 /TimesI-ISOL1 FS (Avramopoulos (89)) show 61 MM 09.5 MM moveto 12 /Times-ISOL1 FS xchart4 0 eq {%xchart4=0 12 /Times-ISOL1 FS (tp=0,1s, 4 Beob., Lu=630&63&6,3cd/m) showde %0UE49X-Y 0200# (tp=0,1s, 4 observ., Lu=630&63&6,3cd/m) showea %1UE49X-Y 0200# 10 /Times-ISOL1 FS 0 2 rmoveto (2) show 0 -2 rmoveto 12 /Times-ISOL1 FS (, Potential-A3-Fit) showde %0UE49X-Y 0201# (, potential A3-fit) showen %1UE49X-Y 0201# } if %xchart4=0 xchart4 1 eq { 12 /Times-ISOL1 FS (Zapfen\255Empfindlichkeit und \255S\344ttigung ) showde %0UE49X-Y 0300# (cone sensitivity and saturation ) showea %1UE49X-Y 0300# (f\374r Abstand )showde (for distance ) showea 12 /Symbol FS (Dl) show 12 /Times-ISOL1 FS (=50) show } if %xchart4=1 xchart4 2 eq { 12 /Times-ISOL1 FS 12 /Times-ISOL1 FS (Zapfen\255Empfindlichkeit und \255S\344ttigung ) showde %0UE49X-Y 0400# (cone sensitivity and saturation ) showea %1UE49X-Y 0400# (f\374r Abstand )showde (for distance ) showea 12 /Symbol FS (Dl) show 12 /Times-ISOL1 FS (=25) show } if %xchart4=2 xchart 9 ge {%xchart>=1 12 /Times-ISOL1 FS (, 3D=) show colorm cvishow (, de=) show deintp cvishow 12 /TimesI-ISOL1 FS xchart5f 0 eq {(, sRGB) show} if xchart5f 1 eq {(, cmyk) show} if xchart5f 2 eq {(, cmy0) show} if xchart5f 3 eq {(, cmyk) show} if colorm 1 eq {(*) show} if } if %xchart>=1 12 /Times-ISOL1 FS 165 MM 13 MM moveto (Eingabe: ) showde %0UE49X-Y 0500# (input: ) showen %1UE49X-Y 0500# (entrada: ) showes %2UE49X-Y 0500# (entr\351e: ) showfr %3UE49X-Y 0500# (immettere: ) showit %4UE49X-Y 0500# (input: ) showjp %5UE49X-Y 0500# 12 /TimesI-ISOL1 FS (w/rgb/cmyk -> ) show xchart xchart3 lt {(w/rgb/cmyk) show } if xchart xchart3 ge {%xchart>=xchart3 (rgb) show } if %xchart>=xchart3 10 /Times-ISOL1 FS 0 -2 rmoveto Txx show 0 2 rmoveto 12 /Times-ISOL1 FS 12 /Times-ISOL1 FS 165 MM 9 MM moveto (Ausgabe: ) showde %0UE49X-Y 0600# (output: ) showen %1UE49X-Y 0600# (salida: ) showes %2UE49X-Y 0600# (sortie: ) showfr %3UE49X-Y 0600# (uscita: ) showit %4UE49X-Y 0600# (output: ) showjp %5UE49X-Y 0600# %colorm=0,1! 12 /Times-ISOL1 FS xchart 8 le {%xchart=0,#0 12 /Times-ISOL1 FS (keine \304nderung) showde %0UE49X-Y 0700# (no change) showen %1UE49X-Y 0700# (ning\372n cambio) showes %2UE49X-Y 0700# (aucun changement) showfr %3UE49X-Y 0700# (nessun cambiamento) showit %4UE49X-Y 0700# (no change compared) showjp %5UE49X-Y 0700# }%xchart=0 {%xchart#0 12 /Times-ISOL1 FS colorm 0 eq {%colorm=0 (Transfer nach ) showde %0UE49X-Y 0800# (transfer to ) showen %1UE49X-Y 0800# (transfiera a ) showes %2UE49X-Y 0800# (transf\351rer \340 ) showfr %3UE49X-Y 0800# (trasferire a ) showit %4UE49X-Y 0800# (transfer to ) showjp %5UE49X-Y 0800# }%colorm=0 {%colorm=1 (3D\255Linearisierung ) showde %0UE49X-Y 0900# (3D\255linearization to ) showen %1UE49X-Y 0900# (3D\255linealizaci\363n a ) showes %2UE49X-Y 0900# (linearisation 3D selon ) showfr %3UE49X-Y 0900# (3D\255linearizzazione a ) showit %4UE49X-Y 0900# (3D\255linearization to ) showjp %5UE49X-Y 0900# } ifelse %colorm=1 12 /TimesI-ISOL1 FS xchart5f 0 eq {(rgb) show} if xchart5f 1 eq {(cmyk) show} if xchart5f 2 eq {(cmy0) show} if xchart5f 3 eq {(cmyk) show} if colorm 1 eq {(*) show} if 10 /Times-ISOL1 FS 0 -2 rmoveto Txx show 0 2 rmoveto 12 /Times-ISOL1 FS } ifelse %xchart=0,#0 %0 setgray %end white and unvisible 12 /Times-ISOL1 FS 62 MM 198.5 MM moveto (http://130.149.60.45/~farbmetrik/UE49/UE49L) show (0) show LSC$ show LEX$ show %1 setgray %start white and unvisible (; ) show xchart 8 le { (Start\255Ausgabe) showde %0UE49X-Y 1000# (start output) showen %1UE49X-Y 1000# (comience salida) showes %2UE49X-Y 1000# (sortie de production) showfr %3UE49X-Y 1000# (cominciare l'uscita) showit %4UE49X-Y 1000# (start output) showjp %5UE49X-Y 1000# } if LSC$ (C) eq { (Start\255Ausgabe) showde %0UE49X-Y 1100# (start output) showen %1UE49X-Y 1100# (comience salida) showes %2UE49X-Y 1100# (sortie de production) showfr %3UE49X-Y 1100# (cominciare l'uscita) showit %4UE49X-Y 1100# (start output) showjp %5UE49X-Y 1100# } if xchart 9 ge {%xchart>=1 colorm 0 eq {%colorm=0,1 (Transfer Ausgabe) showde %0UE49X-Y 1200# (transfer output) showen %1UE49X-Y 1200# (salida de transferencia) showes %2UE49X-Y 1200# (sortie de transfert) showfr %3UE49X-Y 1200# (uscita di trasferimento) showit %4UE49X-Y 1200# (transfer output) showjp %5UE49X-Y 1200# }%colorm=0 {%colorm=1 (3D\255Linearisierung) showde %0UE49X-Y 1300# (3D\255linearization) showen %1UE49X-Y 1300# (3D\255linealizaci\363n) showes %2UE49X-Y 1300# (linearisation 3D) showfr %3UE49X-Y 1300# (3D\255linearizzzazione) showit %4UE49X-Y 1300# (3D\255linearization) showjp %5UE49X-Y 1300# } ifelse %colorm=0,1 } if %xchart>=1 62 MM 194 MM moveto LSC$ (N) eq LSC$ (C) eq or { (N: Keine 3D\255Linearisierung (OL) ) showde %0UE49X-Y 1400# (N: no 3D\255linearization (OL) ) showen %1UE49X-Y 1400# (N: ninguna 3D\255linealizaci\363n (OL) ) showes %2UE49X-Y 1400# (N: aucun linearisation 3D (OL) ) showfr %3UE49X-Y 1400# (N: nessun 3D\255linearizzazione (OL) ) showit %4UE49X-Y 1400# (N: no 3D\255linearization (OL) ) showjp %5UE49X-Y 1400# (in Datei (F) oder PS\255Startup (S)) showde %0UE49X-Y 1500# (in file (F) or PS\255startup (S)) showen %1UE49X-Y 1500# (en archivo (F) o PS\255startup (S)) showes %2UE49X-Y 1500# (dans fichier (F) ou PS\255startup (S)) showfr %3UE49X-Y 1500# (nel file (F) o PS\255startup (S)) showit %4UE49X-Y 1500# (in file (F) or PS\255startup (S)) showjp %5UE49X-Y 1500# } {LSC$ show (: ) show (3D\255Linearisierung) showde %0UE49X-Y 1600# (3D\255linearization) showen %1UE49X-Y 1600# (3D\255linealizaci\363n) showes %2UE49X-Y 1600# (linearisation 3D) showfr %3UE49X-Y 1600# (3D\255linearizzzazione) showit %4UE49X-Y 1600# (3D\255linearization) showjp %5UE49X-Y 1600# ( UE49/UE49L) show LSS$ show LSX$ show (0) show LSC$ show LEY$ show } ifelse LSC$ (F) eq { ( in Datei (F)) showde %0UE49X-Y 1700# ( in file (F)) showen %1UE49X-Y 1700# ( en archivo (F)) showes %2UE49X-Y 1700# ( dans fichier (F)) showfr %3UE49X-Y 1700# ( nel file (F)) showit %4UE49X-Y 1700# ( in file (F)) showjp %5UE49X-Y 1700# } if LSC$ (S) eq { ( im Distiller Startup (S) Directory) showde %0UE49X-Y 1800# ( in Distiller Startup (S) Directory) showen %1UE49X-Y 1800# ( en el Distiller Startup (S) Directory) showes %2UE49X-Y 1800# ( dans le Distiller Startup (S) Directory) showfr %3UE49X-Y 1800# ( nel Distiller Startup (S) Directory) showit %4UE49X-Y 1800# ( in Distiller Startup (S) Directory) showjp %5UE49X-Y 1800# } if LSC$ (D) eq { ( in PS\255Device (D)) showde %0UE49X-Y 1900# ( in PS\255device (D)) showen %1UE49X-Y 1900# ( en el PS\255device (D)) showes %2UE49X-Y 1900# ( dans l'appareil PS (D)) showfr %3UE49X-Y 1900# ( nel PS\255dispositivo (D)) showit %4UE49X-Y 1900# ( in PS\255Device (D)) showjp %5UE49X-Y 1900# } if LSC$ (T) eq { ( im Distiller Startup (S) Directory) showde %0UE49X-Y 2000# ( in Distiller Startup (S) Directory) showen %1UE49X-Y 2000# ( en el Distiller Startup (S) Directory) showes %2UE49X-Y 2000# ( dans le Distiller Startup (S) Directory) showfr %3UE49X-Y 2000# ( nel Distiller Startup (S) Directory) showit %4UE49X-Y 2000# ( in Distiller Startup (S) Directory) showjp %5UE49X-Y 2000# } if LSC$ (E) eq { ( in PS\255Device (D)) showde %0UE49X-Y 2100# ( in PS\255device (D)) showen %1UE49X-Y 2100# ( en el PS\255device (D)) showes %2UE49X-Y 2100# ( dans appareil PS (D)) showfr %3UE49X-Y 2100# ( nel PS\255dispositivo (D)) showit %4UE49X-Y 2100# ( in PS\255Device (D)) showjp %5UE49X-Y 2100# } if %0 setgray %end white and unvisible (, Seite ) showde %0UE49X-Y 2200# (, page ) showen %1UE49X-Y 2200# (, p\341gina ) showes %2UE49X-Y 2200# (, page ) showfr %3UE49X-Y 2200# (, pagina ) showit %4UE49X-Y 2200# (, page ) showjp %5UE49X-Y 2200# xchart 1 add cvishow (/) show xchartm cvishow 16 MM 185 MM moveto -90 rotate (Siehe \344hnliche Dateien: ) showde %0UE49X-Y 2300# (see similar files: ) showen %1UE49X-Y 2300# (vea archivos semejantes: ) showes %2UE49X-Y 2300# (voir des fichiers similaires: ) showfr %3UE49X-Y 2300# (vedere dei file simili: ) showit %4UE49X-Y 2300# (see similar files: ) showjp %5UE49X-Y 2300# (http://130.149.60.45/~farbmetrik/UE49/UE49.HTM) show %(0) show %LSC$ show LEX$ show 90 rotate 12 MM 185 MM moveto -90 rotate (Technische Information: ) showde %0UE49X-Y 2400# (technical information: ) showen %1UE49X-Y 2400# (informaci\363n t\351cnica: ) showes %2UE49X-Y 2400# (informations techniques: ) showfr %3UE49X-Y 2400# (informazioni tecniche: ) showit %4UE49X-Y 2400# (technical information: ) showjp %5UE49X-Y 2400# (http://www.ps.bam.de) show ( oder ) showde %0UE49X-Y 2500# ( or ) showen %1UE49X-Y 2500# ( o ) showes %2UE49X-Y 2500# ( ou ) showfr %3UE49X-Y 2500# ( o ) showit %4UE49X-Y 2500# ( or ) showjp %5UE49X-Y 2500# (http://130.149.60.45/~farbmetrik) show 90 rotate 281 MM 185 MM moveto -90 rotate (TUB\255Registrierung: 20130201\255UE49/UE49L) showde %0UE49X-Y 2600# (TUB registration: 20130201\255UE49/UE49L) showen %1UE49X-Y 2600# (TUB matr\355cula: 20130201\255UE49/UE49L) showes %2UE49X-Y 2600# (TUB enregistrement: 20130201\255UE49/UE49L) showfr %3UE49X-Y 2600# (TUB iscrizione: 20130201\255UE49/UE49L) showit %4UE49X-Y 2600# (TUB registration: 20130201\255UE49/UE49L) showjp %5UE49X-Y 2600# (0) show LSC$ show LEX$ show 90 rotate 281 MM 74 MM moveto -90 rotate (TUB\255Material: Code=rha4ta) showde %0UE49X-Y 2700# (TUB material: code=rha4ta) showen %1UE49X-Y 2700# (TUB material: code=rha4ta) showes %2UE49X-Y 2700# (TUB mat\351riel: code=rha4ta) showfr %3UE49X-Y 2700# (TUB materiale: code=rha4ta) showit %4UE49X-Y 2700# (TUB material: code=rha4ta) showjp %5UE49X-Y 2700# 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 ) showde %0UE49X-Y 2800# ( application for measurement ) showen %1UE49X-Y 2800# ( aplicaci\363n para la medida ) showes %2UE49X-Y 2800# ( application pour la mesure ) showfr %3UE49X-Y 2800# ( la domanda per la misura ) showit %4UE49X-Y 2800# ( application for measurement ) showjp %5UE49X-Y 2800# xchart5f 0 eq {%xchart5f=0 (von Display-Ausgabe) showde %0UE49X-Y 2900# (of display output) showen %1UE49X-Y 2900# (de display output) showes %2UE49X-Y 2900# (de sortie sur \350cran) showfr %3UE49X-Y 2900# (di stampa di display) showit %4UE49X-Y 2900# (of display output) showjp %5UE49X-Y 2900# } if %xchart5f=0 xchart5f 1 eq xchart5f 2 eq or {%xchart5f=1,2 (von Offsetdruck\255Ausgabe) showde %0UE49X-Y 3000# (of offset print output) showen %1UE49X-Y 3000# (salida en la impressi\363n offset) showes %2UE49X-Y 3000# (des sorties sur offset) showfr %3UE49X-Y 3000# (uscita nella stampa di offset) showit %4UE49X-Y 3000# (of offset print output) showjp %5UE49X-Y 3000# } if %xchart5f=1,2 xchart5f 3 eq {%xchart5f=3 (von Laserdrucker\255Ausgabe) showde %0UE49X-Y 3100# (of laser printer output) showen %1UE49X-Y 3100# (salida de impresora l\341ser) showes %2UE49X-Y 3100# (des sorties sur imprimante laser) showfr %3UE49X-Y 3100# (di uscita della stampante laser) showit %4UE49X-Y 3100# (of laser printer output) showjp %5UE49X-Y 3100# } if %xchart5f=3 xchart 1 ge {%xchart>=1 xchart5f 0 eq {%xchart5f=0 (, keine Separation) showde %0UE49X-Y 3200# (, no separation) showen %1UE49X-Y 3200# (, ninguna separaci\363n) showes %2UE49X-Y 3200# (, aucune s\351paration) showfr %3UE49X-Y 3200# (, nessuna separazione) showit %4UE49X-Y 3200# (, no separation) showjp %5UE49X-Y 3200# } if %chart5f=0 xchart5f 1 ge {%xchart5f>=1 (, Separation) showde %0UE49X-Y 3300# (, separation) showen %1UE49X-Y 3300# (, separaci\363n) showes %2UE49X-Y 3300# (, s\351paration) showfr %3UE49X-Y 3300# (, separazione) showit %4UE49X-Y 3300# (, separation) showjp %5UE49X-Y 3300# xchart5f 1 eq xchart5f 3 eq or {(cmyn6) show} if xchart5f 2 eq {(cmy0) show} if colorm 1 eq {(*) show} if colsep 0 eq {( (CMYK))}{( (CMY0))} ifelse show } if %xchart5f>=1 } if %xchart>=1 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 %/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 } ifelse %xt=1 grestore gsave %********************************************************** %%Trailer %%EndDocument EndEPSF grestore gsave showpage grestore %} for %colsepf=0,1 %} for %pchartf=0,0 } for %xchartf=0,1 %} for %xcolorf=3,3 %} for %deintpf=0,1 %} for %colormf=0,1 %} for %lanindf=0,0 %%Trailer