Difference between revisions of "File:Autraplot.jpg"

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{{oq|Autraplot.jpg|Original file ‎(1,123 × 1,140 pixels, file size: 127 KB, MIME type: image/jpeg)|400}}
Explicit plot of function [[AuTra]] and two its asymptotics.
 
   
  +
Fig.20.9 from page 283 of book «[[Superfunctions]]»<ref name="e"><small>
  +
https://www.amazon.com/Superfunctions-Non-integer-holomorphic-functions-superfunctions/dp/6202672862
  +
</small><br>
  +
https://mizugadro.mydns.jp/BOOK/468.pdf D.Kouznetsov. [[Superfunctions]]. [[Lambert Academic Publishing]], 2020.
 
</ref>, 2020.
   
This image is used as figure 20.9 of the Book
+
This image is used also as Рис.20.9 at page 293 of the Russian version
  +
<ref name="r">
[[Superfunction]] (In Russian, 2014; the English version is in preparation, 2015)
 
<ref>
 
 
https://www.morebooks.de/store/ru/book/Суперфункции/isbn/978-3-659-56202-0 <br>
 
https://www.morebooks.de/store/ru/book/Суперфункции/isbn/978-3-659-56202-0 <br>
http://www.ils.uec.ac.jp/~dima/BOOK/202.pdf <br>
 
 
http://mizugadro.mydns.jp/BOOK/202.pdf
 
http://mizugadro.mydns.jp/BOOK/202.pdf
Д.Кузнецов. Суперфункции. Lambert Academic Publishing, 2014
+
Д.Кузнецов. [[Суперфункции]]. [[Lambert Academic Publishing]], 2014
</ref>.
+
</ref>, 2014.
  +
 
The figure shows the [[explicit plot]] of function [[AuTra]] and two its [[asymptotic]]s.
  +
  +
[[AuTra]] is [[inverse function]] of function [[SuTra]],
  +
\( \mathrm{AuTra} = \mathrm{SuTra}^{-1} \)
   
 
Function [[SuTra]]
 
Function [[SuTra]]
  +
is [[Entire Function with Logarithmic Asymptotic]].
as entire function with logarithmic asymptotic is described also in year 2013 at Hikari
 
  +
<ref>
 
  +
Functions [[AuTra]] and [[SuTra]] are described also
http://www.m-hikari.com/ams/ams-2013/ams-129-132-2013/kouznetsovAMS129-132-2013.pdf D.Kouznetsov. Entire Function with Logarithmic Asymptotic. Applied Mathematical Sciences, Vol. 7, 2013, no. 131, 6527 - 6541
 
  +
at the «[[Applied Mathematical Sciences]]» <ref>
</ref>.
 
 
http://www.m-hikari.com/ams/ams-2013/ams-129-132-2013/kouznetsovAMS129-132-2013.pdf D.Kouznetsov. [[Entire Function with Logarithmic Asymptotic]]. [[Applied Mathematical Sciences]], Vol. 7, 2013, no. 131, 6527 - 6541
  +
</ref>, 2013.
   
  +
Function [[SuTra]] is [[superfunction]] of the [[Trappmann function]]
==References==
 
  +
\(z \mapsto z+\exp(z) \).
<references/>
 
   
  +
[[AuTra]] is the [[Abelfunction]].
  +
   
  +
Warning! There is misprint in the book in figure 20.9:
==[[C++]] generator of curves==
 
   
  +
The label of the bottom [[asymptotic]] should be
Files [[ado.cin]], [[conto.cin]],
 
  +
\(y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}\!-\!\mathrm e^x/6 \)
[[sutran.cin]]
 
  +
should be loaded to the working directory in order to compile the code below
 
  +
It is corrected in this picture and the Latex code.
<poem><nomathjax><nowiki>
 
  +
(But the misprint remains in the printed version of the Book.)
  +
  +
The C++ code is initially correct.
  +
 
==[[C++]] generator of curves==
 
/* Files [[ado.cin]], [[conto.cin]], [[sutran.cin]]
 
should be loaded to the working directory in order to compile the code below */
  +
<pre>
 
#include <math.h>
 
#include <math.h>
 
#include <stdio.h>
 
#include <stdio.h>
Line 66: Line 86:
 
getchar(); system("killall Preview"); // For macintosh
 
getchar(); system("killall Preview"); // For macintosh
 
}
 
}
  +
</pre>
</nowiki></nomathjax></poem>
 
 
 
==[[Latex]] generator of labels==
 
==[[Latex]] generator of labels==
  +
<pre>
 
<poem><nomathjax><nowiki>
 
 
\documentclass[12pt]{article}
 
\documentclass[12pt]{article}
 
\usepackage{geometry}
 
\usepackage{geometry}
Line 102: Line 120:
 
\put(267,325){\sx{2.2}{\rot{17}$y\!=\!\mathrm{AuTra}(x)$\ero}}
 
\put(267,325){\sx{2.2}{\rot{17}$y\!=\!\mathrm{AuTra}(x)$\ero}}
 
%\put(185,128){\sx{2.2}{$y\!=\!x/2\!-\!\mathrm e^x\!+\!1.1259817765745026-exp(x)/6.+exp(2*x)/16)$}}
 
%\put(185,128){\sx{2.2}{$y\!=\!x/2\!-\!\mathrm e^x\!+\!1.1259817765745026-exp(x)/6.+exp(2*x)/16)$}}
\put(166,122){\sx{2}{$y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}\!+\!\mathrm e^x/6$}}
+
\put(166,122){\sx{2}{$y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}\!-\!\mathrm e^x/6$}}
 
\end{picture}
 
\end{picture}
 
\end{document}
 
\end{document}
  +
</pre>
</nowiki></nomathjax></poem>
 
   
 
==References==
 
{{ref}}
  +
  +
{{fer}}
  +
==Keywords==
 
«[[ado.cin]]»,
  +
«[[AuTra]]»,
  +
«[[Abel function]]»,
  +
«[[Abelfunction]]»,
  +
«[[Approximation]]»,
  +
«[[Asymptotic]]»,
  +
«[[Entire Function with Logarithmic Asymptotic]]»,
  +
«[[Implementation]]»,
  +
«[[Special function]]»,
  +
«[[SuTra]]»,
  +
«[[Sutran.cin]]»,
  +
«[[Superfunction]]»,
  +
«[[Superfunctions]]»,
  +
«[[Trappmann function]]»,
  +
  +
«[[Суперфункции]]»,
  +
 
[[Category:Abel function]]
  +
[[Category:Abelfunction]]
  +
[[Category:ado.cin]]
  +
[[Category:Agreement]]
  +
[[Category:Applied Mathematical Sciences]]
  +
[[Category:Approximation]]
  +
[[Category:Asymptotic]]
 
[[Category:Book]]
 
[[Category:Book]]
[[Category:BookMap]]
+
[[Category:BookPlot]]
[[Category:Explicit plot]]
 
 
[[Category:C++]]
 
[[Category:C++]]
[[Category:Special function]]
+
[[Category:Entire Function with Logarithmic Asymptotic]]
  +
[[Category:Explicit plot]]
  +
[[Category:Implementation]]
  +
[[Category:Lambert Academic Publishing]]
 
[[Category:Latex]]
 
[[Category:Latex]]
[[Category:Superfunction]]
+
[[Category:Special function]]
 
[[Category:SuTra]]
 
[[Category:SuTra]]
  +
[[Category:Superfunctions]]
 
[[Category:Trappmann function]]
 
[[Category:Trappmann function]]

Latest revision as of 22:41, 11 January 2026


Fig.20.9 from page 283 of book «Superfunctions»[1], 2020.

This image is used also as Рис.20.9 at page 293 of the Russian version [2], 2014.

The figure shows the explicit plot of function AuTra and two its asymptotics.

AuTra is inverse function of function SuTra, \( \mathrm{AuTra} = \mathrm{SuTra}^{-1} \)

Function SuTra is Entire Function with Logarithmic Asymptotic.

Functions AuTra and SuTra are described also at the «Applied Mathematical Sciences» [3], 2013.

Function SuTra is superfunction of the Trappmann function \(z \mapsto z+\exp(z) \).

AuTra is the Abelfunction.


Warning! There is misprint in the book in figure 20.9:

The label of the bottom asymptotic should be \(y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}\!-\!\mathrm e^x/6 \)

It is corrected in this picture and the Latex code. (But the misprint remains in the printed version of the Book.)

The C++ code is initially correct.

C++ generator of curves

/* Files ado.cin, conto.cin, sutran.cin should be loaded to the working directory in order to compile 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 std::complex<double> z_type;
#define Re(x) x.real()
#define Im(x) x.imag()
#define I z_type(0.,1.)
z_type tra(z_type z){ return exp(z)+z;}
#include "ado.cin"
#include "arctran.cin"
#include "sutran.cin"
#include "autran.cin"

#define M(x,y) fprintf(o,"%6.4f %6.4f M\n",0.+x,0.+y);
#define L(x,y) fprintf(o,"%6.4f %6.4f L\n",0.+x,0.+y); 
int main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d;  FILE *o;o=fopen("autraplo.eps","w");  ado(o,412,412);
fprintf(o,"104 204 translate\n 100 100 scale\n");
fprintf(o,"1 setlinejoin 2 setlinecap\n");
for(n=-2;n<3;n++) {M(-1,n)L(3,n)}
for(m=-1;m<4;m++) {M(m,-2)L(m,2)}
// M(M_E,0)L(M_E,1) M(0,M_E)L(1,M_E)  
//M(0,1.+M_E) L(2,1.+M_E)
fprintf(o,".004 W S\n");
//DO(m,700){x=-2.01 +.02*m; y=Re(sutran(x)); if(m==0) M(x,y) else L(x,y) if(x>3.03||y>3.01) break;} fprintf(o,".01 W 0 0 1 RGB S\n");
//DO(m,740){x=-3.1 +.02*m; y=Re(sutran(x)); if(m==0) M(y,x) else L(y,x) if(x>3.03||y>6.01) break;} fprintf(o,".03 W 0 1 1 RGB S\n");
//DO(m,740){x=-1.25 +.02*m; y=Re(autra(x)); if(m==0) M(x,y) else L(x,y) if(x>6.03||y>6.01) break;} fprintf(o,".03 W 1 .5 0 RGB S\n"); 
DO(m,740){x=-1.1 +.02*m; y=Re(autran(x)); if(m==0) M(x,y) else L(x,y) if(x>3.03||y>3.01) break;} fprintf(o,".03 W 1 0 0 RGB S\n"); 
DO(m,740){x=-1.1 +.02*m; y=.5*x-exp(-x)+1.1259817765745026; if(m==0) M(x,y) else L(x,y) if(x>3.03||y>3.01) break;} fprintf(o,".01 W 0 0 0 RGB S\n"); 
DO(m,740){x=-1.1 +.02*m; y=.5*x-exp(-x)+1.1259817765745026-exp(x)/6.; if(m==0) M(x,y) else L(x,y) if(x>3.03||y>3.01) break;} fprintf(o,".01 W 0 0 0 RGB S\n"); 
//DO(m,740){x=-1.25 +.02*m; y=.5*x-exp(-x)+1.1259817765745026-exp(x)/6.+exp(2*x)/16; if(m==0) M(x,y) else L(x,y) if(x>6.03||y>6.01) break;} fprintf(o,".01 W 0 0 0 RGB S\n"); 
fprintf(o,"showpage\n"); fprintf(o,"%c%cTrailer\n",'%','%');  fclose(o);
    system("epstopdf autraplo.eps"); 
    system(    "open autraplo.pdf"); //for macintosh
    getchar(); system("killall Preview"); // For macintosh
}

Latex generator of labels

\documentclass[12pt]{article} 
\usepackage{geometry} 
\usepackage{graphicx}
\usepackage{rotating}
\paperwidth 406pt
\paperheight 412pt
\topmargin -98pt
\oddsidemargin -75.6pt
\textwidth 900pt
\textheight 900pt
\pagestyle {empty}
\newcommand \sx {\scalebox}
\newcommand \rot {\begin{rotate}}
\newcommand \ero {\end{rotate}}
\newcommand \ing {\includegraphics}
\parindent 0pt
\pagestyle{empty}
\begin{document} 
\begin{picture}(402,404)
\put(112,391){\sx{2.2}{$y$}}
\put(112,296){\sx{2.2}{$1$}}
\put(112,196){\sx{2.2}{$0$}}
\put(102, 96){\sx{2.2}{$-1$}}
\put(99,180){\sx{2.2}{$0$}}
\put(199,180){\sx{2.2}{$1$}}
\put(299,180){\sx{2.2}{$2$}}
\put(390,180){\sx{2.2}{$x$}}
\put(0,0){\ing{autraplo}}
\put(153,303){\sx{2}{\rot{35}$y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}$\ero}}
\put(267,325){\sx{2.2}{\rot{17}$y\!=\!\mathrm{AuTra}(x)$\ero}}
%\put(185,128){\sx{2.2}{$y\!=\!x/2\!-\!\mathrm e^x\!+\!1.1259817765745026-exp(x)/6.+exp(2*x)/16)$}}
\put(166,122){\sx{2}{$y\!=\!x_0\!+\!x/2\!-\!\mathrm e^{-x}\!-\!\mathrm e^x/6$}}
\end{picture}
\end{document}

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current22:39, 11 January 2026Thumbnail for version as of 22:39, 11 January 20261,123 × 1,140 (127 KB)T (talk | contribs)corrected misprint in the label
06:10, 1 December 2018Thumbnail for version as of 06:10, 1 December 2018842 × 855 (99 KB)Maintenance script (talk | contribs)Importing image file

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