Difference between revisions of "File:LogiarcT300.png"
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+ | [[Explicit plot]] of function [[ArcLogisticSequence]]$_s(x)$ versus $x$ for various values of parameter $s$. |
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− | Importing image file |
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+ | |||
+ | The singularities ([[branch point.]]s) are marked with black circles. |
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+ | |||
+ | ==C++ generator of curves== |
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+ | // Files [[efjh.cin]] and [[ado.cin]] should be loaded in the working directory in order to compile the [[C++]] code below. |
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+ | |||
+ | #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 "ado.cin" |
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+ | #include "efjh.cin" |
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+ | main(){ int j,k,m,n; DB x0,y0,x,y, p,q, t; z_type z,c,d; |
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+ | FILE *o;o=fopen("logiarc.eps","w");ado(o,150,340); |
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+ | fprintf(o,"20 220 translate\n 100 100 scale\n"); |
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+ | #define M(x,y) fprintf(o,"%6.3f %6.3f M\n",0.+x,0.+y); |
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+ | #define L(x,y) fprintf(o,"%6.3f %6.3f L\n",0.+x,0.+y); |
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+ | fprintf(o,"1 setlinejoin 2 setlinecap\n"); |
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+ | for(m=0;m<2;m++){if(m==0){M(m,-2.04)L(m,1.06)} else{M(m,-2)L(m,1)}} |
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+ | for(n=-2;n<2;n++){if(n==0){M(-.06,n)L(1.2,n)} else{M(0,n)L(1,n)}} |
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+ | fprintf(o,".004 W 0 0 0 RGB S\n"); |
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+ | fprintf(o,"1 setlinejoin 1 setlinecap\n"); |
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+ | maq(5.); |
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+ | x0=5./4.; y0=Re(E(x0)); |
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+ | fprintf(o,"%6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); |
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+ | M(x0,y0); |
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+ | printf("%4.2f %8.6f %8.6f\n",Q,x,y); |
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+ | DO(m,1250) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if( y<-2.01) break; } |
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+ | fprintf(o,".007 W 0 0 0 RGB S\n"); |
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+ | maq(4.); |
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+ | x0=1; y0=Re(E(x0)); |
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+ | fprintf(o,"%6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); |
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+ | M(x0,y0); |
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+ | DO(m,1000) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y) if(y<-2.01) break; } |
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+ | printf("%4.2f %8.6f %8.6f\n",Q,x,y); |
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+ | fprintf(o,".02 W 1 0 1 RGB S\n"); |
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+ | maq(3.4); |
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+ | x0=3.4/4.; y0=Re(E(x0)); |
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+ | fprintf(o,"0 0 0 RGB .01 W %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); |
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+ | M(x0,y0); |
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+ | DO(m,790) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } |
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+ | printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); |
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+ | fprintf(o,".02 W 0 .7 0 RGB S\n"); |
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+ | maq(3.); |
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+ | x0=3./4.; y0=Re(E(x0)); |
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+ | fprintf(o,"0 0 0 RGB .01 W %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); |
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+ | M(x0,y0); |
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+ | DO(m,790) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } |
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+ | printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); |
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+ | fprintf(o,".015 W 1 0 0 RGB [.03 .04] 1 setdash S\n"); |
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+ | fprintf(o,"1 setlinejoin 1 setlinecap\n"); |
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+ | maq(3.8); |
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+ | x0=3.8/4.; y0=Re(E(x0)); |
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+ | fprintf(o,"0 0 0 RGB .01 W [1 0] 0 setdash %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); |
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+ | M(x0,y0); |
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+ | DO(m,890) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } |
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+ | printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); |
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+ | fprintf(o,".015 W 0 0 1 RGB [.001 .025] 0 setdash S\n"); |
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+ | fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o); |
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+ | system("epstopdf logiarc.eps"); |
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+ | system( "open logiarc.pdf"); |
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+ | getchar(); system("killall Preview"); |
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+ | } |
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+ | |||
+ | |||
+ | ==Latex generator of labels== |
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+ | % File [[logiarc.pdf]] should be generated with the code above in order to compile the [[Latex]] document below. |
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+ | |||
+ | %<nowiki> %<br> |
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+ | |||
+ | \documentclass[12pt]{article} %<br> |
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+ | \usepackage{geometry} %<br> |
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+ | \usepackage{graphics} %<br> |
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+ | \usepackage{rotating} %<br> |
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+ | \paperwidth 144pt %<br> |
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+ | \paperheight 310pt %<br> |
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+ | \topmargin -107pt %<br> |
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+ | \oddsidemargin -94pt %<br> |
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+ | \newcommand \sx {\scalebox} %<br> |
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+ | \newcommand \ing \includegraphics %<br> |
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+ | \newcommand \rot {\begin{rotate}} %<br> |
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+ | \newcommand \ero {\end{rotate}} %<br> |
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+ | \begin{document} %<br> |
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+ | \begin{picture}(168,323) %<br> |
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+ | \put(0,0){\includegraphics{logiarc}} %<br> |
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+ | \put(10,314){\sx{1.4}{$1$}} %<br> |
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+ | \put(0,115){\sx{1.4}{$-\!1$}} %<br> |
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+ | \put(0,16){\sx{1.4}{$-\!2$}} %<br> |
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+ | \put(16.2,207){\sx{1.5}{$0$}} %<br> |
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+ | \put(116.2,207){\sx{1.5}{$1$}} %<br> |
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+ | \put(138,207){\sx{1.5}{$x$}} %<br> |
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+ | \put( 89,254){\sx{1.}{\rot{78}$s\!=\!3$\ero}} %<br> |
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+ | \put(100,252){\sx{1.}{\rot{73}$s\!=\!3.4$\ero}} %<br> |
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+ | \put(107,251){\sx{1.}{\rot{68}$s\!=\!3.8$\ero}} %<br> |
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+ | \put(118,251){\sx{1.1}{\rot{65}$s\!=\!4$\ero}} %<br> |
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+ | \put(131,243){\sx{1.1}{\rot{51}$s\!=\!5$\ero}} %<br> |
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+ | \end{picture} %<br> |
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+ | \end{document} %<br> |
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+ | |||
+ | %</nowiki> %<br> |
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+ | |||
+ | ==References== |
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+ | <references/> |
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+ | |||
+ | [[Category:ArcLogisticSequence]] |
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+ | [[Category:LogisticSequence]] |
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+ | [[Category:Abel function]] |
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+ | [[Category:Superfunction]] |
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+ | [[Category:LogisticOperator]] |
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+ | [[Category:C++]] |
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+ | [[Category:Latex]] |
Latest revision as of 09:43, 21 June 2013
Explicit plot of function ArcLogisticSequence$_s(x)$ versus $x$ for various values of parameter $s$.
The singularities (branch point.s) are marked with black circles.
C++ generator of curves
// Files efjh.cin and ado.cin should be loaded in the working directory in order to compile the C++ 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 "ado.cin" #include "efjh.cin" main(){ int j,k,m,n; DB x0,y0,x,y, p,q, t; z_type z,c,d; FILE *o;o=fopen("logiarc.eps","w");ado(o,150,340); fprintf(o,"20 220 translate\n 100 100 scale\n"); #define M(x,y) fprintf(o,"%6.3f %6.3f M\n",0.+x,0.+y); #define L(x,y) fprintf(o,"%6.3f %6.3f L\n",0.+x,0.+y); fprintf(o,"1 setlinejoin 2 setlinecap\n"); for(m=0;m<2;m++){if(m==0){M(m,-2.04)L(m,1.06)} else{M(m,-2)L(m,1)}} for(n=-2;n<2;n++){if(n==0){M(-.06,n)L(1.2,n)} else{M(0,n)L(1,n)}} fprintf(o,".004 W 0 0 0 RGB S\n"); fprintf(o,"1 setlinejoin 1 setlinecap\n"); maq(5.); x0=5./4.; y0=Re(E(x0)); fprintf(o,"%6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); M(x0,y0); printf("%4.2f %8.6f %8.6f\n",Q,x,y); DO(m,1250) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if( y<-2.01) break; } fprintf(o,".007 W 0 0 0 RGB S\n"); maq(4.); x0=1; y0=Re(E(x0)); fprintf(o,"%6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); M(x0,y0); DO(m,1000) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y) if(y<-2.01) break; } printf("%4.2f %8.6f %8.6f\n",Q,x,y); fprintf(o,".02 W 1 0 1 RGB S\n"); maq(3.4); x0=3.4/4.; y0=Re(E(x0)); fprintf(o,"0 0 0 RGB .01 W %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); M(x0,y0); DO(m,790) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); fprintf(o,".02 W 0 .7 0 RGB S\n"); maq(3.); x0=3./4.; y0=Re(E(x0)); fprintf(o,"0 0 0 RGB .01 W %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); M(x0,y0); DO(m,790) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); fprintf(o,".015 W 1 0 0 RGB [.03 .04] 1 setdash S\n"); fprintf(o,"1 setlinejoin 1 setlinecap\n"); maq(3.8); x0=3.8/4.; y0=Re(E(x0)); fprintf(o,"0 0 0 RGB .01 W [1 0] 0 setdash %6.4f %6.4f .02 0 360 arc C S\n newpath\n",x0,y0); M(x0,y0); DO(m,890) { x=x0-.001*m; z=E(x); y=Re(z); L(x,y); if(y<-2.01) break; } printf("%4.2f %8.6f %8.6f\n",Q,x0,y0); fprintf(o,".015 W 0 0 1 RGB [.001 .025] 0 setdash S\n"); fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o); system("epstopdf logiarc.eps"); system( "open logiarc.pdf"); getchar(); system("killall Preview"); }
Latex generator of labels
% File logiarc.pdf should be generated with the code above in order to compile the Latex document below.
% %<br>
\documentclass[12pt]{article} %<br>
\usepackage{geometry} %<br>
\usepackage{graphics} %<br>
\usepackage{rotating} %<br>
\paperwidth 144pt %<br>
\paperheight 310pt %<br>
\topmargin -107pt %<br>
\oddsidemargin -94pt %<br>
\newcommand \sx {\scalebox} %<br>
\newcommand \ing \includegraphics %<br>
\newcommand \rot {\begin{rotate}} %<br>
\newcommand \ero {\end{rotate}} %<br>
\begin{document} %<br>
\begin{picture}(168,323) %<br>
\put(0,0){\includegraphics{logiarc}} %<br>
\put(10,314){\sx{1.4}{$1$}} %<br>
\put(0,115){\sx{1.4}{$-\!1$}} %<br>
\put(0,16){\sx{1.4}{$-\!2$}} %<br>
\put(16.2,207){\sx{1.5}{$0$}} %<br>
\put(116.2,207){\sx{1.5}{$1$}} %<br>
\put(138,207){\sx{1.5}{$x$}} %<br>
\put( 89,254){\sx{1.}{\rot{78}$s\!=\!3$\ero}} %<br>
\put(100,252){\sx{1.}{\rot{73}$s\!=\!3.4$\ero}} %<br>
\put(107,251){\sx{1.}{\rot{68}$s\!=\!3.8$\ero}} %<br>
\put(118,251){\sx{1.1}{\rot{65}$s\!=\!4$\ero}} %<br>
\put(131,243){\sx{1.1}{\rot{51}$s\!=\!5$\ero}} %<br>
\end{picture} %<br>
\end{document} %<br>
% %
References
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