File:PowIteT.jpg
Original file (2,093 × 2,093 pixels, file size: 1.01 MB, MIME type: image/jpeg)
Summary
Title / Description
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Explicit plot of th Iteration of the quadratic function, id est, power function for power 2; for various values of number of iteration. Here,
The iteration of is implemented in the following way: :
where
is superfunction for the transfer function and
is the Abel Function. The thick lines represent and . FIrst of them overlaps with <matm>y=T^1(x)</math> and corresponds to , and the second overlaps with and corresponds to . |
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Citizendium author & Copyright holder
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Copyright © Dmitrii Kouznetsov. See below for licence/re-use information. |
Date created
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2012.11.11 |
Country of first publication
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Japan |
Notes
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You can edit this page and add notes here which may be useful to people who wish to re-use this media. |
Other versions
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http://tori.ils.uec.ac.jp/TORI/index.php/File:PowIteT.jpg |
Using this image on CZ
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| , then copy the code below to add this image to a Citizendium article, changing the size, alignment, and caption as necessary.
Please send email to manager A T citizendium.org .
Files used to generate the figure are supplied below.
C++ generator of curves
// file ado.cin should be loaded to 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"
DB B=2.; DB F(DB z) { return exp( exp( log(B)*z));} DB G(DB z) { return log( log(z) )/log(B);}
main(){ int m,n; double x,y,t; FILE *o; o=fopen("PowIte.eps","w"); ado(o,1010,1010); fprintf(o,"1 1 translate 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); for(m=0;m<11;m++) {M(m,0)L(m,10)} for(m=0;m<11;m++) {M(0,m)L(10,m)} fprintf(o,"2 setlinecap .01 W S\n"); DO(m,402){x=0.001+.01*m; y=exp(2.*log(x)); if(m==0)M(x,y) else L(x,y); if(y>10.1) break;} DO(m,402){x=0.001+.01*m; y=exp(4.*log(x)); if(m==0)M(x,y) else L(x,y); if(y>10.1) break;} DO(m,402){x=0.001+.01*m; y=exp(8.*log(x)); if(m==0)M(x,y) else L(x,y); if(y>10.1) break;} fprintf(o,"1 setlinecap 1 setlinejoin .04 W 0 1 0 RGB S\n"); DO(m,1002){x=0.001+.01*m; y=exp(.5*log(x)); if(m==0)M(x,y) else L(x,y);} fprintf(o,"1 setlinecap 1 setlinejoin .04 W 1 0 1 RGB S\n"); DO(m,1002){x=0.001+.01*m; y=exp(.25*log(x)); if(m==0)M(x,y) else L(x,y);} fprintf(o,"1 setlinecap 1 setlinejoin .04 W 1 0 1 RGB S\n"); DO(m,1002){x=0.001+.01*m; y=exp(.125*log(x)); if(m==0)M(x,y) else L(x,y);} fprintf(o,"1 setlinecap 1 setlinejoin .04 W 1 0 1 RGB S\n"); for(n=-20;n<21;n++){t=.1*n; DO(m,182){x=1.+.05*m; y=F(t+G(x)); if(m==0) M(x,y) else L(x,y); if(y>10.1)break;} } fprintf(o,"1 setlinecap 1 setlinejoin .02 W 0 0 0 RGB S\n"); fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o); system("epstopdf PowIte.eps"); system( "open PowIte.pdf"); getchar(); system("killall Preview"); }
Latex generator of labels
% %<br> % file IterPowPlot.pdf should be generated with the code above in order to compile the Latex document below. %<br> % Copyleft 2012 by Dmitrii Kouznetsov <br> % \documentclass[12pt]{article} % <br> \usepackage{geometry} % <br> \usepackage{graphicx} % <br> \usepackage{rotating} % <br> \paperwidth 1008pt % <br> \paperheight 1008pt % <br> \topmargin -94pt % <br> \oddsidemargin -81pt % <br> \textwidth 1100pt % <br> \textheight 1100pt % <br> \pagestyle {empty} % <br> \newcommand \sx {\scalebox} % <br> \newcommand \rot {\begin{rotate}} % <br> \newcommand \ero {\end{rotate}} % <br> \newcommand \ing {\includegraphics} % <br> \parindent 0pt% <br> \pagestyle{empty} % <br> \begin{document} % <br> \begin{picture}(1002,1002) % <br> %\put(10,10){\ing{IterPowPlot}} % <br> \put(10,10){\ing{PowIte}} % <br> %\put(11,976){\sx{4}{$y\!=\!\mathrm{pow}_2^c(x)$}} % <br> \put(11,976){\sx{4}{$y\!=\!x^{2^n}$}} % <br> \put(11,898){\sx{4}{$9$}} % <br> \put(11,798){\sx{4}{$8$}} % <br> \put(11,698){\sx{4}{$7$}} % <br> \put(11,598){\sx{4}{$6$}} % <br> \put(11,498){\sx{4}{$5$}} % <br> \put(11,398){\sx{4}{$4$}} % <br> \put(11,298){\sx{4}{$3$}} % <br> \put(11,198){\sx{4}{$2$}} % <br> \put(11,098){\sx{4}{$1$}} % <br> % <br> \put(100,16){\sx{4}{$1$}} % <br> \put(200,16){\sx{4}{$2$}} % <br> \put(301,16){\sx{4}{$3$}} % <br> \put(401,16){\sx{4}{$4$}} % <br> \put(502,16){\sx{4}{$5$}} % <br> \put(602,16){\sx{4}{$6$}} % <br> \put(703,16){\sx{4}{$7$}} % <br> \put(803,16){\sx{4}{$8$}} % <br> \put(903,16){\sx{4}{$9$}} % <br> \put(990,16){\sx{4}{$x$}} % <br> % <br> \put(140,870){\sx{3.6}{\rot{88}$n\!=\!3$\ero}} % <br> \put(179,870){\sx{3.6}{\rot{87}$n\!=\!2$\ero}} % <br> \put(325,921){\sx{3.6}{\rot{81}$n\!=\!1$\ero}} % <br> \put(461,893){\sx{3.6}{\rot{70}$n\!=\!0.6$\ero}} % <br> \put(509,894){\sx{3.6}{\rot{69}$n\!=\!0.5$\ero}} % <br> \put(563,895){\sx{3.6}{\rot{63}$n\!=\!0.4$\ero}} % <br> \put(630,897){\sx{3.6}{\rot{59}$n\!=\!0.3$\ero}} % <br> \put(713,900){\sx{3.6}{\rot{54}$n\!=\!0.2$\ero}} % <br> \put(826,913){\sx{3.6}{\rot{50}$n\!=\!0.1$\ero}} % <br> % <br> \put(928,932){\sx{3.6}{\rot{45}$n\!=\!0$\ero}} % <br> % <br> \put(894,778){\sx{3.6}{\rot{39}$n\!=\!-0.1$\ero}} % <br> \put(888,676){\sx{3.6}{\rot{33}$n\!=\!-0.2$\ero}} % <br> \put(884,596){\sx{3.6}{\rot{28}$n\!=\!-0.3$\ero}} % <br> \put(877,528){\sx{3.6}{\rot{24}$n\!=\!-0.4$\ero}} % <br> \put(871,476){\sx{3.6}{\rot{19}$n\!=\!-0.5$\ero}} % <br> \put(870,429){\sx{3.6}{\rot{17}$n\!=\!-0.6$\ero}} % <br> % <br> \put(890,298){\sx{3.6}{\rot{8}$n\!=\!-1$\ero}} % <br> \put(886,157){\sx{3.6}{\rot{1}$n\!=\!-2$\ero}} % <br> \put(886,115){\sx{3.6}{\rot{.3}$n\!=\!-3$\ero}} % <br> \end{picture} % <br> \end{document} % <br> %
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File history
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 18:52, 11 March 2022 | 2,093 × 2,093 (1.01 MB) | Maintenance script (talk | contribs) | == Summary == Importing file |
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