gnumembrane.eps

来自「FreeFem++可以生成高质量的有限元网格。可以用于流体力学」· EPS 代码 · 共 4,588 行 · 第 1/5 页

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%!PS-Adobe-2.0 EPSF-2.0%%Title: gnumembrane.eps%%Creator: gnuplot 4.0 patchlevel 0%%CreationDate: Fri Jul 22 15:35:15 2005%%DocumentFonts: (atend)%%BoundingBox: 50 50 410 302%%Orientation: Portrait%%EndComments/gnudict 256 dict defgnudict begin/Color true def/Solid false def/gnulinewidth 5.000 def/userlinewidth gnulinewidth def/vshift -46 def/dl {10.0 mul} def/hpt_ 31.5 def/vpt_ 31.5 def/hpt hpt_ def/vpt vpt_ def/Rounded false def/M {moveto} bind def/L {lineto} bind def/R {rmoveto} bind def/V {rlineto} bind def/N {newpath moveto} bind def/C {setrgbcolor} bind def/f {rlineto fill} bind def/vpt2 vpt 2 mul def/hpt2 hpt 2 mul def/Lshow { currentpoint stroke M  0 vshift R show } def/Rshow { currentpoint stroke M  dup stringwidth pop neg vshift R show } def/Cshow { currentpoint stroke M  dup stringwidth pop -2 div vshift R show } def/UP { dup vpt_ mul /vpt exch def hpt_ mul /hpt exch def  /hpt2 hpt 2 mul def /vpt2 vpt 2 mul def } def/DL { Color {setrgbcolor Solid {pop []} if 0 setdash } {pop pop pop 0 setgray Solid {pop []} if 0 setdash} ifelse } def/BL { stroke userlinewidth 2 mul setlinewidth      Rounded { 1 setlinejoin 1 setlinecap } if } def/AL { stroke userlinewidth 2 div setlinewidth      Rounded { 1 setlinejoin 1 setlinecap } if } def/UL { dup gnulinewidth mul /userlinewidth exch def      dup 1 lt {pop 1} if 10 mul /udl exch def } def/PL { stroke userlinewidth setlinewidth      Rounded { 1 setlinejoin 1 setlinecap } if } def/LTw { PL [] 1 setgray } def/LTb { BL [] 0 0 0 DL } def/LTa { AL [1 udl mul 2 udl mul] 0 setdash 0 0 0 setrgbcolor } def/LT0 { PL [] 1 0 0 DL } def/LT1 { PL [4 dl 2 dl] 0 1 0 DL } def/LT2 { PL [2 dl 3 dl] 0 0 1 DL } def/LT3 { PL [1 dl 1.5 dl] 1 0 1 DL } def/LT4 { PL [5 dl 2 dl 1 dl 2 dl] 0 1 1 DL } def/LT5 { PL [4 dl 3 dl 1 dl 3 dl] 1 1 0 DL } def/LT6 { PL [2 dl 2 dl 2 dl 4 dl] 0 0 0 DL } def/LT7 { PL [2 dl 2 dl 2 dl 2 dl 2 dl 4 dl] 1 0.3 0 DL } def/LT8 { PL [2 dl 2 dl 2 dl 2 dl 2 dl 2 dl 2 dl 4 dl] 0.5 0.5 0.5 DL } def/Pnt { stroke [] 0 setdash   gsave 1 setlinecap M 0 0 V stroke grestore } def/Dia { stroke [] 0 setdash 2 copy vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath stroke  Pnt } def/Pls { stroke [] 0 setdash vpt sub M 0 vpt2 V  currentpoint stroke M  hpt neg vpt neg R hpt2 0 V stroke  } def/Box { stroke [] 0 setdash 2 copy exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V closepath stroke  Pnt } def/Crs { stroke [] 0 setdash exch hpt sub exch vpt add M  hpt2 vpt2 neg V currentpoint stroke M  hpt2 neg 0 R hpt2 vpt2 V stroke } def/TriU { stroke [] 0 setdash 2 copy vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath stroke  Pnt  } def/Star { 2 copy Pls Crs } def/BoxF { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V  hpt2 0 V  0 vpt2 V  hpt2 neg 0 V  closepath fill } def/TriUF { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath fill } def/TriD { stroke [] 0 setdash 2 copy vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath stroke  Pnt  } def/TriDF { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath fill} def/DiaF { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath fill } def/Pent { stroke [] 0 setdash 2 copy gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath stroke grestore Pnt } def/PentF { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath fill grestore } def/Circle { stroke [] 0 setdash 2 copy  hpt 0 360 arc stroke Pnt } def/CircleF { stroke [] 0 setdash hpt 0 360 arc fill } def/C0 { BL [] 0 setdash 2 copy moveto vpt 90 450  arc } bind def/C1 { BL [] 0 setdash 2 copy        moveto       2 copy  vpt 0 90 arc closepath fill               vpt 0 360 arc closepath } bind def/C2 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 90 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C3 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C4 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 180 270 arc closepath fill               vpt 0 360 arc closepath } bind def/C5 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 90 arc       2 copy moveto       2 copy  vpt 180 270 arc closepath fill               vpt 0 360 arc } bind def/C6 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 90 270 arc closepath fill              vpt 0 360 arc closepath } bind def/C7 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 0 270 arc closepath fill              vpt 0 360 arc closepath } bind def/C8 { BL [] 0 setdash 2 copy moveto      2 copy vpt 270 360 arc closepath fill              vpt 0 360 arc closepath } bind def/C9 { BL [] 0 setdash 2 copy moveto      2 copy  vpt 270 450 arc closepath fill              vpt 0 360 arc closepath } bind def/C10 { BL [] 0 setdash 2 copy 2 copy moveto vpt 270 360 arc closepath fill       2 copy moveto       2 copy vpt 90 180 arc closepath fill               vpt 0 360 arc closepath } bind def/C11 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 0 180 arc closepath fill       2 copy moveto       2 copy  vpt 270 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C12 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 180 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C13 { BL [] 0 setdash  2 copy moveto       2 copy  vpt 0 90 arc closepath fill       2 copy moveto       2 copy  vpt 180 360 arc closepath fill               vpt 0 360 arc closepath } bind def/C14 { BL [] 0 setdash 2 copy moveto       2 copy  vpt 90 360 arc closepath fill               vpt 0 360 arc } bind def/C15 { BL [] 0 setdash 2 copy vpt 0 360 arc closepath fill               vpt 0 360 arc closepath } bind def/Rec   { newpath 4 2 roll moveto 1 index 0 rlineto 0 exch rlineto       neg 0 rlineto closepath } bind def/Square { dup Rec } bind def/Bsquare { vpt sub exch vpt sub exch vpt2 Square } bind def/S0 { BL [] 0 setdash 2 copy moveto 0 vpt rlineto BL Bsquare } bind def/S1 { BL [] 0 setdash 2 copy vpt Square fill Bsquare } bind def/S2 { BL [] 0 setdash 2 copy exch vpt sub exch vpt Square fill Bsquare } bind def/S3 { BL [] 0 setdash 2 copy exch vpt sub exch vpt2 vpt Rec fill Bsquare } bind def/S4 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt Square fill Bsquare } bind def/S5 { BL [] 0 setdash 2 copy 2 copy vpt Square fill       exch vpt sub exch vpt sub vpt Square fill Bsquare } bind def/S6 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt vpt2 Rec fill Bsquare } bind def/S7 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt vpt2 Rec fill       2 copy vpt Square fill       Bsquare } bind def/S8 { BL [] 0 setdash 2 copy vpt sub vpt Square fill Bsquare } bind def/S9 { BL [] 0 setdash 2 copy vpt sub vpt vpt2 Rec fill Bsquare } bind def/S10 { BL [] 0 setdash 2 copy vpt sub vpt Square fill 2 copy exch vpt sub exch vpt Square fill       Bsquare } bind def/S11 { BL [] 0 setdash 2 copy vpt sub vpt Square fill 2 copy exch vpt sub exch vpt2 vpt Rec fill       Bsquare } bind def/S12 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill Bsquare } bind def/S13 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill       2 copy vpt Square fill Bsquare } bind def/S14 { BL [] 0 setdash 2 copy exch vpt sub exch vpt sub vpt2 vpt Rec fill       2 copy exch vpt sub exch vpt Square fill Bsquare } bind def/S15 { BL [] 0 setdash 2 copy Bsquare fill Bsquare } bind def/D0 { gsave translate 45 rotate 0 0 S0 stroke grestore } bind def/D1 { gsave translate 45 rotate 0 0 S1 stroke grestore } bind def/D2 { gsave translate 45 rotate 0 0 S2 stroke grestore } bind def/D3 { gsave translate 45 rotate 0 0 S3 stroke grestore } bind def/D4 { gsave translate 45 rotate 0 0 S4 stroke grestore } bind def/D5 { gsave translate 45 rotate 0 0 S5 stroke grestore } bind def/D6 { gsave translate 45 rotate 0 0 S6 stroke grestore } bind def/D7 { gsave translate 45 rotate 0 0 S7 stroke grestore } bind def/D8 { gsave translate 45 rotate 0 0 S8 stroke grestore } bind def/D9 { gsave translate 45 rotate 0 0 S9 stroke grestore } bind def/D10 { gsave translate 45 rotate 0 0 S10 stroke grestore } bind def/D11 { gsave translate 45 rotate 0 0 S11 stroke grestore } bind def/D12 { gsave translate 45 rotate 0 0 S12 stroke grestore } bind def/D13 { gsave translate 45 rotate 0 0 S13 stroke grestore } bind def/D14 { gsave translate 45 rotate 0 0 S14 stroke grestore } bind def/D15 { gsave translate 45 rotate 0 0 S15 stroke grestore } bind def/DiaE { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V closepath stroke } def/BoxE { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V closepath stroke } def/TriUE { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V closepath stroke } def/TriDE { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V closepath stroke } def/PentE { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  closepath stroke grestore } def/CircE { stroke [] 0 setdash   hpt 0 360 arc stroke } def/Opaque { gsave closepath 1 setgray fill grestore 0 setgray closepath } def/DiaW { stroke [] 0 setdash vpt add M  hpt neg vpt neg V hpt vpt neg V  hpt vpt V hpt neg vpt V Opaque stroke } def/BoxW { stroke [] 0 setdash exch hpt sub exch vpt add M  0 vpt2 neg V hpt2 0 V 0 vpt2 V  hpt2 neg 0 V Opaque stroke } def/TriUW { stroke [] 0 setdash vpt 1.12 mul add M  hpt neg vpt -1.62 mul V  hpt 2 mul 0 V  hpt neg vpt 1.62 mul V Opaque stroke } def/TriDW { stroke [] 0 setdash vpt 1.12 mul sub M  hpt neg vpt 1.62 mul V  hpt 2 mul 0 V  hpt neg vpt -1.62 mul V Opaque stroke } def/PentW { stroke [] 0 setdash gsave  translate 0 hpt M 4 {72 rotate 0 hpt L} repeat  Opaque stroke grestore } def/CircW { stroke [] 0 setdash   hpt 0 360 arc Opaque stroke } def/BoxFill { gsave Rec 1 setgray fill grestore } def/BoxColFill {  gsave Rec  /Fillden exch def  currentrgbcolor  /ColB exch def /ColG exch def /ColR exch def  /ColR ColR Fillden mul Fillden sub 1 add def  /ColG ColG Fillden mul Fillden sub 1 add def  /ColB ColB Fillden mul Fillden sub 1 add def  ColR ColG ColB setrgbcolor  fill grestore } def%% PostScript Level 1 Pattern Fill routine% Usage: x y w h s a XX PatternFill%	x,y = lower left corner of box to be filled%	w,h = width and height of box%	  a = angle in degrees between lines and x-axis%	 XX = 0/1 for no/yes cross-hatch%/PatternFill { gsave /PFa [ 9 2 roll ] def    PFa 0 get PFa 2 get 2 div add PFa 1 get PFa 3 get 2 div add translate    PFa 2 get -2 div PFa 3 get -2 div PFa 2 get PFa 3 get Rec    gsave 1 setgray fill grestore clip    currentlinewidth 0.5 mul setlinewidth    /PFs PFa 2 get dup mul PFa 3 get dup mul add sqrt def    0 0 M PFa 5 get rotate PFs -2 div dup translate	0 1 PFs PFa 4 get div 1 add floor cvi	{ PFa 4 get mul 0 M 0 PFs V } for    0 PFa 6 get ne {	0 1 PFs PFa 4 get div 1 add floor cvi	{ PFa 4 get mul 0 2 1 roll M PFs 0 V } for    } if    stroke grestore } def%/Symbol-Oblique /Symbol findfont [1 0 .167 1 0 0] makefontdup length dict begin {1 index /FID eq {pop pop} {def} ifelse} forallcurrentdict end definefont popend%%EndProloggnudict begingsave50 50 translate0.050 0.050 scale0 setgraynewpath(Helvetica) findfont 140 scalefont setfont1.000 ULLTbgsave %% colour palette begin/maxcolors 0 def/HSV2RGB {  exch dup 0.0 eq {pop exch pop dup dup} % achromatic gray  { /HSVs exch def /HSVv exch def 6.0 mul dup floor dup 3 1 roll sub     /HSVf exch def /HSVi exch cvi def /HSVp HSVv 1.0 HSVs sub mul def	 /HSVq HSVv 1.0 HSVs HSVf mul sub mul def 	 /HSVt HSVv 1.0 HSVs 1.0 HSVf sub mul sub mul def	 /HSVi HSVi 6 mod def 0 HSVi eq {HSVv HSVt HSVp}	 {1 HSVi eq {HSVq HSVv HSVp}{2 HSVi eq {HSVp HSVv HSVt}	 {3 HSVi eq {HSVp HSVq HSVv}{4 HSVi eq {HSVt HSVp HSVv}	 {HSVv HSVp HSVq} ifelse} ifelse} ifelse} ifelse} ifelse  } ifelse} def/Constrain {  dup 0 lt {0 exch pop}{dup 1 gt {1 exch pop} if} ifelse} def/YIQ2RGB {  3 copy -1.702 mul exch -1.105 mul add add Constrain 4 1 roll  3 copy -0.647 mul exch -0.272 mul add add Constrain 5 1 roll  0.621 mul exch -0.956 mul add add Constrain 3 1 roll } def/CMY2RGB {  1 exch sub exch 1 exch sub 3 2 roll 1 exch sub 3 1 roll exch } def/XYZ2RGB {  3 copy -0.9017 mul exch -0.1187 mul add exch 0.0585 mul exch add  Constrain 4 1 roll 3 copy -0.0279 mul exch 1.999 mul add exch  -0.9844 mul add Constrain 5 1 roll -0.2891 mul exch -0.5338 mul add  exch 1.91 mul exch add Constrain 3 1 roll} def/SelectSpace {ColorSpace (HSV) eq {HSV2RGB}{ColorSpace (XYZ) eq {  XYZ2RGB}{ColorSpace (CMY) eq {CMY2RGB}{ColorSpace (YIQ) eq {YIQ2RGB}  if} ifelse} ifelse} ifelse} def/InterpolatedColor false def/cF30 {0.32 div 0.78125 sub} bind def	% x/0.32-0.78125/cF31 {2 mul 0.84 sub} bind def	% 2*x-0.84/cF32 {dup 0.42 le {4 mul} {dup 0.92 le {-2 mul 1.84 add} {0.08 div 11.5 sub} ifelse} ifelse} bind def	% 4x;1;-2x+1.84;x/0.08-11.5/maxcolorsLast {maxcolors 1 sub maxcolors div} def/pm3dround {maxcolors 0 gt {dup maxcolorsLast ge {pop 1}{maxcolors mul floor maxcolors div} ifelse} if} def/pm3dGamma 1.0 1.5 div def/ColorSpace (RGB) defColor true and { % COLOUR vs. GRAY map  InterpolatedColor { %% Interpolation vs. RGB-Formula    /g {stroke pm3dround /grayv exch def interpolate        SelectSpace setrgbcolor} bind def  }{  /g {stroke pm3dround dup cF30 Constrain exch dup cF31 Constrain exch cF32 Constrain        SelectSpace setrgbcolor} bind def  } ifelse}{  /g {stroke pm3dround pm3dGamma exp setgray} bind def} ifelse/h {rlineto rlineto rlineto fill} bind defstroke gsave	%% draw gray scale smooth boxmaxcolors 0 gt {/imax maxcolors def} {/imax 1024 def} ifelse6329 2213 translate 266 1648 scale 0 setlinewidth/ystep 1 imax div def /y0 0 def /ii 0 def{ y0 g 0 y0 N 1 0 V 0 ystep V -1 0 f/y0 y0 ystep add def /ii ii 1 add defii imax ge {exit} if } loopgrestore 0 setgray1.000 ULLTb6329 2213 M266 0 V0 1648 V-266 0 V0 -1648 V1.000 ULLTb1.000 ULLTb6595 2213 M-63 0 V147 0 R(-2) Lshow1.000 ULLTb6329 2213 M63 0 V203 206 R-63 0 V147 0 R(-1.5) Lshow1.000 ULLTb6329 2419 M63 0 V203 206 R-63 0 V147 0 R(-1) Lshow1.000 ULLTb6329 2625 M63 0 V203 206 R-63 0 V147 0 R(-0.5) Lshow1.000 ULLTb6329 2831 M63 0 V203 206 R-63 0 V147 0 R( 0) Lshow1.000 ULLTb6329 3037 M63 0 V203 206 R-63 0 V147 0 R( 0.5) Lshow1.000 ULLTb6329 3243 M63 0 V203 206 R-63 0 V147 0 R( 1) Lshow1.000 ULLTb6329 3449 M63 0 V203 206 R-63 0 V147 0 R( 1.5) Lshow1.000 ULLTb6329 3655 M63 0 V203 206 R-63 0 V147 0 R( 2) Lshow1.000 ULLTb6329 3861 M63 0 V1.000 ULLTb938 1671 M3228 696 V1.000 ULLTb6262 1295 M4166 2367 L1.000 ULLTb938 1671 M0 2214 V1.000 ULLTb3034 598 M-51 27 V1.000 ULLTb3103 540 M(-2) Cshow1.000 ULLTb1.000 ULLTb938 1671 M51 -27 V1.000 ULLTb3438 685 M-52 27 V1.000 ULLTb3507 627 M(-1.5) Cshow1.000 ULLTb1.000 ULLTb1341 1758 M52 -26 V1.000 ULLTb3841 772 M-52 27 V1.000 ULLTb3910 714 M(-1) Cshow1.000 ULLTb1.000 ULLTb1745 1845 M51 -26 V1.000 ULLTb4244 859 M-51 27 V1.000 ULLTb4313 801 M(-0.5) Cshow1.000 ULLTb1.000 ULLTb2148 1932 M52 -26 V1.000 ULLTb4648 947 M-52 26 V1.000 ULLTb4717 888 M( 0) Cshow1.000 ULLTb1.000 ULLTb2552 2019 M52 -26 V1.000 ULLTb5052 1034 M-52 26 V1.000 ULLTb5120 975 M( 0.5) Cshow1.000 ULLTb1.000 ULLTb2956 2106 M51 -26 V1.000 ULLTb5455 1121 M-51 26 V1.000 ULLTb5524 1062 M( 1) Cshow1.000 ULLTb1.000 ULLTb3359 2193 M52 -26 V1.000 ULLTb5859 1208 M-52 26 V1.000 ULLTb5928 1149 M( 1.5) Cshow1.000 ULLTb1.000 ULLTb3762 2280 M52 -26 V1.000 ULLTb6262 1295 M-51 26 V1.000 ULLTb6331 1236 M( 2) Cshow1.000 ULLTb1.000 ULLTb4166 2367 M51 -26 V1.000 ULLTb3034 598 M53 12 V2964 573 M(-1) Cshow1.000 ULLTb1.000 ULLTb6262 1295 M-52 -12 V1.000 ULLTb2825 705 M53 12 V2754 680 M(-0.8) Cshow1.000 ULLTb1.000 ULLTb6053 1402 M-53 -11 V1.000 ULLTb2615 813 M53 11 V2545 787 M(-0.6) Cshow1.000 ULLTb1.000 ULLTb5843 1509 M-53 -11 V1.000 ULLTb2405 920 M53 11 V2335 895 M(-0.4) Cshow1.000 ULLTb1.000 ULLTb5633 1617 M-53 -12 V1.000 ULLTb2196 1027 M53 12 V-124 -37 R(-0.2) Cshow1.000 ULLTb1.000 ULLTb5424 1724 M-53 -12 V1.000 ULLTb1986 1135 M53 11 V-123 -37 R( 0) Cshow1.000 ULLTb1.000 ULLTb5214 1831 M-53 -11 V1.000 ULLTb1776 1242 M53 11 V-123 -37 R( 0.2) Cshow1.000 ULLTb1.000 ULLTb5004 1938 M-53 -11 V1.000 ULLTb1567 1349 M53 11 V-124 -36 R( 0.4) Cshow1.000 ULLTb1.000 ULLTb4795 2046 M-53 -12 V1.000 ULLTb1357 1456 M53 12 V-123 -37 R( 0.6) Cshow1.000 ULLTb1.000 ULLTb4585 2153 M-53 -11 V1.000 ULLTb1147 1564 M53 11 V-123 -37 R( 0.8) Cshow1.000 ULLTb1.000 ULLTb4375 2260 M-53 -11 V1.000 ULLTb938 1671 M52 11 V867 1646 M( 1) Cshow1.000 ULLTb1.000 ULLTb4166 2367 M-53 -11 V1.000 ULLTb938 2409 M63 0 V-189 0 R(-2) Rshow1.000 ULLTb1.000 ULLTb938 2593 M63 0 V-189 0 R(-1.5) Rshow1.000 ULLTb1.000 ULLTb938 2778 M63 0 V-189 0 R(-1) Rshow1.000 ULLTb1.000 ULLTb938 2962 M63 0 V-189 0 R(-0.5) Rshow1.000 ULLTb1.000 ULLTb938 3147 M63 0 V-189 0 R( 0) Rshow1.000 ULLTb1.000 ULLTb938 3331 M63 0 V-189 0 R( 0.5) Rshow1.000 ULLTb1.000 ULLTb938 3516 M63 0 V-189 0 R( 1) Rshow1.000 ULLTb1.000 ULLTb938 3701 M63 0 V-189 0 R( 1.5) Rshow1.000 ULLTb1.000 ULLTb938 3885 M63 0 V-189 0 R( 2) Rshow1.000 ULLTb1.000 UP1.000 ULLT0LTb6402 4556 M("phi.txt") Rshow1.000 ULLT06486 4556 M.1966 g .1982 g 6486 4556 M17 0 V.1997 g 6503 4556 M16 0 V.2012 g 6519 4556 M17 0 V.2028 g 6536 4556 M17 0 V.2043 g 6553 4556 M16 0 V.2058 g 6569 4556 M17 0 V.2074 g 6586 4556 M16 0 V.2089 g 6602 4556 M17 0 V.2104 g 6619 4556 M17 0 V.212 g 6636 4556 M16 0 V.2135 g 6652 4556 M17 0 V.2151 g 6669 4556 M17 0 V.2166 g 6686 4556 M16 0 V.2181 g 6702 4556 M17 0 V.2197 g 6719 4556 M16 0 V.2212 g 6735 4556 M17 0 V.2227 g 6752 4556 M17 0 V.2243 g 6769 4556 M16 0 V.2258 g 6785 4556 M17 0 V.2274 g 6802 4556 M17 0 V.2289 g 6819 4556 M16 0 V.2304 g 6835 4556 M17 0 V.232 g 6852 4556 M16 0 V.2335 g 6868 4556 M17 0 V.2062 g 3382 1939 M-78 -27 V.2151 g 3304 1912 M3 93 V.2246 g 3307 2005 M75 -66 V1.000 ULLT0.2758 g 3389 2035 M0 102 V.2888 g 3389 2137 M77 -62 V.2682 g 3466 2075 M-77 -40 V1.000 ULLT0.2255 g 3539 1898 M-79 71 V.2477 g 3460 1969 M81 33 V.2368 g 3541 2002 M-2 -104 V1.000 ULLT0.2605 g 3620 1924 M0 124 V.2694 g 3620 2048 M80 -97 V.241 g 3700 1951 M-80 -27 V1.000 ULLT0.3302 g 3235 2246 M-18 79 V.3446 g 3217 2325 M89 -31 V.3311 g 3306 2294 M-71 -48 V1.000 ULLT0.2836 g 3221 2146 M-56 55 V.3034 g 3165 2201 M70 45 V.297 g 3235 2246 M-14 -100 V1.000 ULLT0.3095 g 3306 2180 M-71 66 V.3311 g 3235 2246 M71 48 V.3239 g 3306 2294 M0 -114 V1.000 ULLT0.2621 g 3231 2064 M-10 82 V.2734 g 3221 2146 M94 -52 V.2583 g 3315 2094 M-84 -30 V1.000 ULLT0.3139 g 3389 2137 M-11 91 V.3265 g 3378 2228 M81 -53 V.309 g 3459 2175 M-70 -38 V1.000 ULLT0.3943 g 3861 2174 M-83 33 V.4135 g 3778 2207 M78 71 V.4166 g 3856 2278 M5 -104 V1.000 ULLT0.6016 g 3536 2973 M65 -58 V.5835 g 3601 2915 M-156 -17 V.5858 g 3445 2898 M91 75 V1.000 ULLT0

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