Difference between revisions of "File:Doyam10map4bT100.png"

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[[Complex map]] of the [[Doya function]] with parameter $-1$.
Importing image file
 
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$f\!=\!\mathrm{Doya}_{-1}(x\!+\!\mathrm{i} y)~$ in the $x,y$ plane is shown with
  +
lines $u\!=\!\Re(f)\!=\! \mathrm{const}$ and
  +
lines $v\!=\!\Im(f)\!=\! \mathrm{const}$.
  +
  +
==Generators==
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  +
===[[C++]] generator of the curves===
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// The files [[ado.cin]] and [[conto.cin]] and [[doya.cin]] should be in the working directory for the compilation of the code below:
  +
  +
#include <math.h>
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#include <stdio.h>
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#include <stdlib.h>
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#define DB double
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#define DO(x,y) for(x=0;x<y;x++)
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using namespace std;
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#include <complex>
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typedef complex<double> z_type;
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#define Re(x) x.real()
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#define Im(x) x.imag()
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#define I z_type(0.,1.)
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#include "conto.cin"
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#include "doya.cin"
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  +
main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d;
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int M=160,M1=M+1;
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int N=160,N1=N+1;
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DB X[M1],Y[N1], g[M1*N1],f[M1*N1], w[M1*N1]; // w is working array.
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char v[M1*N1]; // v is working array
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FILE *o;o=fopen("doyam10map4b.eps","w");ado(o,82,82);
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fprintf(o,"41 41 translate\n 10 10 scale\n");
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DO(m,M1) X[m]=-4.+.05*(m);
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DO(n,N1) Y[n]=-4.01+.05*(n);
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for(m=-4;m<5;m++){if(m==0){M(m,-4.2)L(m,4.2)} else{M(m,-4)L(m,4)}}
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for(n=-4;n<5;n++){ M( -4,n)L(4,n)}
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fprintf(o,".008 W 0 0 0 RGB S\n");
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DO(m,M1)DO(n,N1){g[m*N1+n]=9999; f[m*N1+n]=9999;}
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DO(m,M1){x=X[m]; //printf("%5.2f\n",x);
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DO(n,N1){y=Y[n]; z=z_type(x,y);
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c=Doya(-1.,z);
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p=Re(c);q=Im(c);
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if(p>-99. && p<99. && q>-99. && q<99. ){ g[m*N1+n]=p;f[m*N1+n]=q;}
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}}
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fprintf(o,"1 setlinejoin 2 setlinecap\n"); p=1.;q=.9;
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for(m=-6;m<5;m++)for(n=2;n<10;n+=2)conto(o,f,w,v,X,Y,M,N,(m+.1*n),-q, q); fprintf(o,".016 W 0 .6 0 RGB S\n");
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for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N,-(m+.1*n),-q, q); fprintf(o,".016 W .9 0 0 RGB S\n");
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for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N, (m+.1*n),-q, q); fprintf(o,".016 W 0 0 .9 RGB S\n");
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for(m=1;m<5;m++) conto(o,f,w,v,X,Y,M,N, (0.-m),-p,p); fprintf(o,".05 W .9 0 0 RGB S\n");
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for(m=1;m<5;m++) conto(o,f,w,v,X,Y,M,N, (0.+m),-p,p); fprintf(o,".05 W 0 0 .9 RGB S\n");
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conto(o,f,w,v,X,Y,M,N, (0. ),-p,p); fprintf(o,".05 W .6 0 .6 RGB S\n");
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for(m=-5;m<6;m++) conto(o,g,w,v,X,Y,M,N, (0.+m),-p,p); fprintf(o,".05 W 0 0 0 RGB S\n");
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for(m=-10;m<11;m+=2) {p=.0866*(m+.33);
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M(.67-1.66*cos(p), 1.66*sin(p))
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L(.67-1.66*cos(p+.03),1.66*sin(p+.03))}
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fprintf(o,".08 W 0 .5 1 RGB S\n");
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for(m=-10;m<11;m+=2) {p=.0866*(m-.33);
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M(.67-1.66*cos(p), 1.66*sin(p))
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L(.67-1.66*cos(p-.03),1.66*sin(p-.03))}
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fprintf(o,".08 W 1 .5 0 RGB S\n");
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fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o);
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system("epstopdf doyam10map4b.eps");
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system( "open doyam10map4b.pdf");
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getchar(); system("killall Preview");
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}
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===[[Latex]] generator of the labels===
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<nomathjax>
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% Copyleft 2011 by Dmitrii Kouznetsov <br>
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\documentclass[12pt]{article} %<br>
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\usepackage{geometry} %<br>
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\usepackage{graphicx} %<br>
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\usepackage{rotating} %<br>
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\paperwidth 866pt %<br>
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\paperheight 843pt %<br>
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\topmargin -94pt %<br>
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\oddsidemargin -96pt %<br>
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\textwidth 1200pt %<br>
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\textheight 1800pt %<br>
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\pagestyle {empty} %<br>
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\newcommand \sx {\scalebox} %<br>
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\newcommand \rot {\begin{rotate}} %<br>
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\newcommand \ero {\end{rotate}} %<br>
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\newcommand \ing {\includegraphics} %<br>
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\begin{document} %<br>
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\sx{10}{ \begin{picture}(41,81) %<br>
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\put(1,1){\ing{doyam10map4b}} % <br>
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\put(-.5,79.6){\sx{.4}{$t$}} % <br>
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\put(-1,71){\sx{.4}{$3$}} % <br>
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\put(-1,61){\sx{.4}{$2$}} % <br>
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\put(-1,51){\sx{.4}{$1$}} % <br>
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\put(-1,41){\sx{.4}{$0$}} % <br>
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\put(-4,31){\sx{.4}{$-1$}} % <br>
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\put(-4,21){\sx{.4}{$-2$}} % <br>
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\put(-4,11){\sx{.4}{$-3$}} % <br>
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\put(9,-1.5){\sx{.4}{$-3$}} % <br>
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\put(18,-1.5){\sx{.4}{$-2$}} % <br>
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\put(28,-1.5){\sx{.4}{$-1$}} % <br>
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\put(41,-1.5){\sx{.4}{0}} % <br>
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\put(51,-1.5){\sx{.4}{1}} % <br>
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\put(61,-1.5){\sx{.4}{2}} % <br>
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\put(71,-1.5){\sx{.4}{3}} % <br>
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\put(79.8,-1.2){\sx{.42}{$x$}} % <br>
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\put(6,72){\rot{6}\sx{.6}{$v\!=\!3$}\ero} % <br>
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\put(6,62){\rot{4}\sx{.6}{$v\!=\!2$}\ero} % <br>
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\put(6,51.5){\rot{2}\sx{.6}{$v\!=\!1$}\ero} % <br>
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\put(6,40.6){\rot{0}\sx{.6}{$v\!=\!0$}\ero} % <br>
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\put(5,30){\rot{-7}\sx{.6}{$v\!=\!-1$}\ero} % <br>
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\put(4,19){\rot{-4}\sx{.6}{$v\!=\!-2$}\ero} % <br>
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\put(3.3,9){\rot{-2}\sx{.6}{$v\!=\!-3$}\ero} % <br>
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\put(66,40.6){\rot{0}\sx{.6}{$v\!=\!0$}\ero} % <br>
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\put(42,40.6){\rot{60}\sx{.6}{$u\!=\!0$}\ero} % <br>
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\put(59,37){\rot{86}\sx{.6}{$u\!=\!1$}\ero} % <br>
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\end{picture} %<br>
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} %<br>
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\end{document}
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</nomathjax>
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[[Category:Doya function]]
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[[Category:Complex maps]]
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[[Category:Laser science]]
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[[Category:Transfer function]]
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[[Category:C++]]
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[[Category:nomathjax]]
  +
[[Category:TORI]]

Revision as of 20:24, 20 June 2013

Complex map of the Doya function with parameter $-1$.

$f\!=\!\mathrm{Doya}_{-1}(x\!+\!\mathrm{i} y)~$ in the $x,y$ plane is shown with lines $u\!=\!\Re(f)\!=\! \mathrm{const}$ and lines $v\!=\!\Im(f)\!=\! \mathrm{const}$.

Generators

C++ generator of the curves

// The files ado.cin and conto.cin and doya.cin should be in the working directory for the compilation of the code below:

#include <math.h>
#include <stdio.h>
#include <stdlib.h>
#define DB double
#define DO(x,y) for(x=0;x<y;x++)
using namespace std;
#include <complex>
typedef complex<double> z_type;
#define Re(x) x.real()
#define Im(x) x.imag()
#define I z_type(0.,1.)
#include "conto.cin"
#include "doya.cin"
main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d;
 int M=160,M1=M+1;
 int N=160,N1=N+1;
DB X[M1],Y[N1], g[M1*N1],f[M1*N1], w[M1*N1]; // w is working array.
char v[M1*N1]; // v is working array
FILE *o;o=fopen("doyam10map4b.eps","w");ado(o,82,82);
fprintf(o,"41 41 translate\n 10 10 scale\n");
DO(m,M1) X[m]=-4.+.05*(m);
DO(n,N1) Y[n]=-4.01+.05*(n);
for(m=-4;m<5;m++){if(m==0){M(m,-4.2)L(m,4.2)} else{M(m,-4)L(m,4)}}
for(n=-4;n<5;n++){     M(  -4,n)L(4,n)}
fprintf(o,".008 W 0 0 0 RGB S\n");
DO(m,M1)DO(n,N1){g[m*N1+n]=9999; f[m*N1+n]=9999;}
DO(m,M1){x=X[m]; //printf("%5.2f\n",x);
DO(n,N1){y=Y[n]; z=z_type(x,y);        
 c=Doya(-1.,z); 
 p=Re(c);q=Im(c);      
 if(p>-99. && p<99. &&  q>-99. && q<99. ){ g[m*N1+n]=p;f[m*N1+n]=q;}
        }}
fprintf(o,"1 setlinejoin 2 setlinecap\n");  p=1.;q=.9;
for(m=-6;m<5;m++)for(n=2;n<10;n+=2)conto(o,f,w,v,X,Y,M,N,(m+.1*n),-q, q); fprintf(o,".016 W 0 .6 0 RGB S\n");
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N,-(m+.1*n),-q, q); fprintf(o,".016 W .9 0 0 RGB S\n");
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N, (m+.1*n),-q, q); fprintf(o,".016 W 0 0 .9 RGB S\n");
for(m=1;m<5;m++)  conto(o,f,w,v,X,Y,M,N, (0.-m),-p,p); fprintf(o,".05 W .9 0 0 RGB S\n");
for(m=1;m<5;m++)  conto(o,f,w,v,X,Y,M,N, (0.+m),-p,p); fprintf(o,".05 W 0 0 .9 RGB S\n");
                   conto(o,f,w,v,X,Y,M,N, (0. ),-p,p); fprintf(o,".05 W .6 0 .6 RGB S\n");
for(m=-5;m<6;m++) conto(o,g,w,v,X,Y,M,N, (0.+m),-p,p); fprintf(o,".05 W 0 0 0 RGB S\n");
for(m=-10;m<11;m+=2) {p=.0866*(m+.33); 
    M(.67-1.66*cos(p),    1.66*sin(p))
    L(.67-1.66*cos(p+.03),1.66*sin(p+.03))}
fprintf(o,".08 W 0 .5 1 RGB S\n");
for(m=-10;m<11;m+=2) {p=.0866*(m-.33); 
    M(.67-1.66*cos(p),    1.66*sin(p))
    L(.67-1.66*cos(p-.03),1.66*sin(p-.03))}
fprintf(o,".08 W 1 .5 0 RGB S\n");
fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o);
       system("epstopdf doyam10map4b.eps");    
       system(    "open doyam10map4b.pdf");
       getchar(); system("killall Preview");
}

Latex generator of the labels

% Copyleft 2011 by Dmitrii Kouznetsov
\documentclass[12pt]{article} %
\usepackage{geometry} %
\usepackage{graphicx} %
\usepackage{rotating} %
\paperwidth 866pt %
\paperheight 843pt %
\topmargin -94pt %
\oddsidemargin -96pt %
\textwidth 1200pt %
\textheight 1800pt %
\pagestyle {empty} %
\newcommand \sx {\scalebox} %
\newcommand \rot {\begin{rotate}} %<br> \newcommand \ero {\end{rotate}} %
\newcommand \ing {\includegraphics} %
\begin{document} %<br> \sx{10}{ \begin{picture}(41,81) %<br> \put(1,1){\ing{doyam10map4b}} % <br> \put(-.5,79.6){\sx{.4}{$t$}} % <br> \put(-1,71){\sx{.4}{$3$}} % <br> \put(-1,61){\sx{.4}{$2$}} % <br> \put(-1,51){\sx{.4}{$1$}} % <br> \put(-1,41){\sx{.4}{$0$}} % <br> \put(-4,31){\sx{.4}{$-1$}} % <br> \put(-4,21){\sx{.4}{$-2$}} % <br> \put(-4,11){\sx{.4}{$-3$}} % <br> \put(9,-1.5){\sx{.4}{$-3$}} % <br> \put(18,-1.5){\sx{.4}{$-2$}} % <br> \put(28,-1.5){\sx{.4}{$-1$}} % <br> \put(41,-1.5){\sx{.4}{0}} % <br> \put(51,-1.5){\sx{.4}{1}} % <br> \put(61,-1.5){\sx{.4}{2}} % <br> \put(71,-1.5){\sx{.4}{3}} % <br> \put(79.8,-1.2){\sx{.42}{$x$}} % <br> \put(6,72){\rot{6}\sx{.6}{$v\!=\!3$}\ero} % <br> \put(6,62){\rot{4}\sx{.6}{$v\!=\!2$}\ero} % <br> \put(6,51.5){\rot{2}\sx{.6}{$v\!=\!1$}\ero} % <br> \put(6,40.6){\rot{0}\sx{.6}{$v\!=\!0$}\ero} % <br> \put(5,30){\rot{-7}\sx{.6}{$v\!=\!-1$}\ero} % <br> \put(4,19){\rot{-4}\sx{.6}{$v\!=\!-2$}\ero} % <br> \put(3.3,9){\rot{-2}\sx{.6}{$v\!=\!-3$}\ero} % <br> \put(66,40.6){\rot{0}\sx{.6}{$v\!=\!0$}\ero} % <br> \put(42,40.6){\rot{60}\sx{.6}{$u\!=\!0$}\ero} % <br> \put(59,37){\rot{86}\sx{.6}{$u\!=\!1$}\ero} % <br> \end{picture} %
} %
\end{document}

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