Difference between revisions of "File:ExpQ2plotT.png"

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{{oq|ExpQ2plotT.png|Original file ‎(2,512 × 1,744 pixels, file size: 175 KB, MIME type: image/png)}}
[[Explicit plot]] of [[exponential]] to base $b\!=\!\sqrt{2} \approx 1.414213562373095$
 
   
  +
[[Explicit plot]] of [[exponential]] to base \(b\!=\!\sqrt{2} \approx 1.414213562373095\)
The thick curve: $y=\exp_b(x)$.
 
   
  +
The thick curve: \(y=\exp_b(x)\).
The thin line shows the identical funciton, $y\!=\!x$.
 
   
  +
The thin line shows the identical function, \(y\!=\!x\).
The [[fixed point]]s $L\!=\!2$ and $L\!=\!4$ are solutions of the equation
 
   
  +
The [[fixed point]]s \(L\!=\!2\) and \(L\!=\!4\) are solutions of the equation
: $\exp_b(L)=L$
 
   
  +
: \(\exp_b(L)=L\)
for $b=\sqrt{2}$.
 
   
  +
for \(b=\sqrt{2}\).
Any of these fixed points can be used to construct a [[superexponential]] to base $\sqrt{2}~$
 
  +
  +
Any of these fixed points can be used to construct [[superexponential]]s to base \(\sqrt{2}~\)
 
<ref>
 
<ref>
 
http://www.ams.org/journals/mcom/2010-79-271/S0025-5718-10-02342-2/home.html <br>
 
http://www.ams.org/journals/mcom/2010-79-271/S0025-5718-10-02342-2/home.html <br>
Line 17: Line 19:
 
D.Kouznetsov, H.Trappmann. Portrait of the four regular super-exponentials to base sqrt(2). Mathematics of Computation, 2010, v.79, p.1727-1756.
 
D.Kouznetsov, H.Trappmann. Portrait of the four regular super-exponentials to base sqrt(2). Mathematics of Computation, 2010, v.79, p.1727-1756.
 
</ref>.
 
</ref>.
  +
One of these superexponentials is qualified as [[Tetration]] to [[base sqrt2]].
  +
  +
==Using==
  +
  +
The picture is used as Fig.9.1 at page 103 of book «[[Superfunctions]]» <ref>
  +
https://www.amazon.co.jp/-/en/Dmitrii-Kouznetsov/dp/6202672862 <br>
  +
https://www.morebooks.de/shop-ui/shop/product/978-620-2-67286-3<br>
  +
https://mizugadro.mydns.jp/BOOK/468.pdf<br>
  +
Dmitrii-Kouznetsov. [[Superfunctions]].
  +
Lambert Academic Publishing, 2020
  +
</ref>, 2020 <br>
  +
and also at its preliminary (Russian) version «[[Суперфункции]]»
  +
<ref>https://mizugadro.mydns.jp/BOOK/202.pdf
  +
Дмитрий Кузнецов. [[Суперфункции]]
  +
Lambert Academic Publishing, 2014
  +
</ref>, fig.9.1 at page 110.
   
 
==References==
 
==References==
  +
{{ref}}
<references/>
 
   
 
http://en.wikipedia.org/wiki/Square_root_of_2
 
http://en.wikipedia.org/wiki/Square_root_of_2
   
 
http://en.wikipedia.org/wiki/Exponential_function
 
http://en.wikipedia.org/wiki/Exponential_function
  +
{{fer}}
 
 
==C++ generator of curves==
 
==C++ generator of curves==
  +
<pre>
 
#include<math.h>
 
#include<math.h>
 
#include<stdio.h>
 
#include<stdio.h>
Line 50: Line 69:
 
getchar(); system("killall Preview");//for mac
 
getchar(); system("killall Preview");//for mac
 
}
 
}
  +
</pre>
 
 
==[[Latex]] generator of labels==
 
==[[Latex]] generator of labels==
  +
% file ExpQ2plot.pdf should be generated with the code above in order to compile the Latex document below.<br>
  +
% Copyleft 2012 by Dmitrii Kouznetsov<br>
  +
<pre>
  +
\documentclass[12pt]{article}
  +
\usepackage{geometry}
  +
\usepackage{graphicx}
  +
\usepackage{rotating}
  +
\paperwidth 1212pt
  +
\paperheight 844pt
  +
\topmargin -92pt
  +
\oddsidemargin -80pt
  +
\textwidth 1604pt
  +
\textheight 1604pt
  +
\pagestyle {empty}
  +
\newcommand \sx {\scalebox}
  +
\newcommand \rot {\begin{rotate}}
  +
\newcommand \ero {\end{rotate}}
  +
\newcommand \ing {\includegraphics}
  +
\parindent 0pt
  +
\pagestyle{empty}
  +
\begin{document}
  +
{\begin{picture}(1202,802)
  +
\put(590,792){\sx{4.2}{$y$}}
  +
\put(590,698){\sx{4.2}{$7$}}
  +
\put(590,598){\sx{4.2}{$6$}}
  +
\put(590,498){\sx{4.2}{$5$}}
  +
\put(590,398){\sx{4.2}{$4$}}
  +
\put(590,298){\sx{4.2}{$3$}}
  +
\put(590,198){\sx{4.2}{$2$}}
  +
\put(590,098){\sx{4.2}{$1$}}
  +
\put(080,-22){\sx{4}{$-5$}}
  +
\put(180,-22){\sx{4}{$-4$}}
  +
\put(281,-22){\sx{4}{$-3$}}
  +
\put(381,-22){\sx{4}{$-2$}}
  +
\put(482,-22){\sx{4}{$-\!1$}}
  +
\put(603.6,-22){\sx{4}{$0$}}
  +
\put(703.7,-22){\sx{4}{$1$}}
  +
\put(803.8,-22){\sx{4}{$2$}}
  +
\put(903.9,-22){\sx{4}{$3$}}
  +
\put(1004.0,-22){\sx{4}{$4$}}
  +
\put(1104.1,-22){\sx{4}{$5$}}
  +
\put(1192.2,-22){\sx{4.3}{$x$}}
  +
%\put(0815,520){\sx{5.6}{\rot{78}$y\!=\!\exp(x)$\ero}}
  +
\put(1034,490){\sx{5.6}{\rot{66}$y\!=\!\exp_{_{\!\!\sqrt{2}}}(x)$\ero}}
  +
\put(1094,444){\sx{5.7}{\rot{45}$y\!=\!x$\ero}}
  +
\put(10,10){\ing{ExpQ2plot}}
  +
\end{picture}}
  +
\end{document}
  +
</pre>
   
  +
==Keywords==
%<nowiki> %<br>
 
  +
«[[Base sqrt2]]»,
% 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> %
 
  +
«[[Book]]»,
\documentclass[12pt]{article} % <br>
 
  +
«[[Exponential]]»,
\usepackage{geometry} % <br>
 
  +
«[[Fixed point]]»,
\usepackage{graphicx} % <br>
 
  +
«[[Superfunctions]]»,
\usepackage{rotating} % <br>
 
  +
«[[]]»,
\paperwidth 1210pt % <br>
 
\paperheight 840pt % <br>
 
\topmargin -96pt % <br>
 
\oddsidemargin -81pt % <br>
 
\textwidth 1200pt % <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}(1202,804) % <br>
 
%\put(10,10){\ing{ExpQ2plot}} % <br>
 
\put(590,792){\sx{4.2}{$y$}} % <br>
 
\put(590,698){\sx{4.2}{$7$}} % <br>
 
\put(590,598){\sx{4.2}{$6$}} % <br>
 
\put(590,498){\sx{4.2}{$5$}} % <br>
 
\put(590,398){\sx{4.2}{$4$}} % <br>
 
\put(590,298){\sx{4.2}{$3$}} % <br>
 
\put(590,198){\sx{4.2}{$2$}} % <br>
 
\put(590,098){\sx{4.2}{$1$}} % <br>
 
% <br>
 
\put(080,-22){\sx{4}{$-5$}} % <br>
 
\put(180,-22){\sx{4}{$-4$}} % <br>
 
\put(281,-22){\sx{4}{$-3$}} % <br>
 
\put(381,-22){\sx{4}{$-2$}} % <br>
 
\put(482,-22){\sx{4}{$-\!1$}} % <br>
 
%
 
\put(603.6,-22){\sx{4}{$0$}} % <br>
 
\put(703.7,-22){\sx{4}{$1$}} % <br>
 
\put(803.8,-22){\sx{4}{$2$}} % <br>
 
\put(903.9,-22){\sx{4}{$3$}} % <br>
 
\put(1004.0,-22){\sx{4}{$4$}} % <br>
 
\put(1104.1,-22){\sx{4}{$5$}} % <br>
 
\put(1192.2,-22){\sx{4.3}{$x$}} % <br>
 
% <br>
 
\put(1034,490){\sx{5.6}{\rot{66}$y\!=\!\exp_{_{\!\!\sqrt{2}}}(x)$\ero}} % <br>
 
\put(1094,444){\sx{5.7}{\rot{45}$y\!=\!x$\ero}} % <br>
 
%\put(890,316){\sx{4.5}{\rot{45}$y\!=\!x$\ero}} % <br>
 
%\put(830,164){\sx{4.5}{\rot{44}$y\!=\!\exp_{\sqrt{2}}(x)$\ero}} % <br>
 
 
%\put(670,125){\sx{6}{\rot{24}$y\!=\!(\sqrt{2})^x$\ero}} % <br>
 
%\put(630,164){\sx{6}{\rot{33}$y\!=\!\exp_{\sqrt{2}}(x)$\ero}} % <br>
 
%\put(690,36){\sx{6}{\rot{45}$y\!=\!x$\ero}} % <br>
 
\put(10,10){\ing{ExpQ2plot}} % <br>
 
\end{picture} % <br>
 
\end{document} % <br>
 
%</nowiki>
 
   
  +
[[Category:Book]]
  +
[[Category:BookPlot]]
  +
[[Category:Base sqrt2]]
 
[[Category:Exponential]]
 
[[Category:Exponential]]
 
[[Category:Fixed point]]
 
[[Category:Fixed point]]

Latest revision as of 11:00, 9 October 2025


Explicit plot of exponential to base \(b\!=\!\sqrt{2} \approx 1.414213562373095\)

The thick curve: \(y=\exp_b(x)\).

The thin line shows the identical function, \(y\!=\!x\).

The fixed points \(L\!=\!2\) and \(L\!=\!4\) are solutions of the equation

\(\exp_b(L)=L\)

for \(b=\sqrt{2}\).

Any of these fixed points can be used to construct superexponentials to base \(\sqrt{2}~\) [1]. One of these superexponentials is qualified as Tetration to base sqrt2.

Using

The picture is used as Fig.9.1 at page 103 of book «Superfunctions» [2], 2020
and also at its preliminary (Russian) version «Суперфункции» [3], fig.9.1 at page 110.

References

  1. http://www.ams.org/journals/mcom/2010-79-271/S0025-5718-10-02342-2/home.html
    http://tori.ils.uec.ac.jp/PAPERS/2010sqrt2.pdf D.Kouznetsov, H.Trappmann. Portrait of the four regular super-exponentials to base sqrt(2). Mathematics of Computation, 2010, v.79, p.1727-1756.
  2. https://www.amazon.co.jp/-/en/Dmitrii-Kouznetsov/dp/6202672862
    https://www.morebooks.de/shop-ui/shop/product/978-620-2-67286-3
    https://mizugadro.mydns.jp/BOOK/468.pdf
    Dmitrii-Kouznetsov. Superfunctions. Lambert Academic Publishing, 2020
  3. https://mizugadro.mydns.jp/BOOK/202.pdf Дмитрий Кузнецов. Суперфункции Lambert Academic Publishing, 2014

C++ generator of curves

 #include<math.h>
 #include<stdio.h>
 #include<stdlib.h>
 #define DB double
 #define DO(x,y) for(x=0;x<y;x++)
 #include "ado.cin"

 DB B=sqrt(2.);

 main(){ int m,n; double x,y; FILE *o;
 o=fopen("ExpQ2plot.eps","w"); ado(o,1204,804);
 fprintf(o,"602 2 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=-6;m<7;m++) {M(m,0)L(m,8)}
 for(m=0;m<9;m++) {M(-6,m)L(6,m)}
 fprintf(o,"2 setlinecap .01 W S\n 2 setlinecap 1 setlinejoin \n");
  for(m=0;m<123;m++){x=-6.1+.1*m; y=exp(log(B)*x); if(m==0)M(x,y) else L(x,y);} fprintf(o,".04 W .8 0 0 RGB S\n");
 M(-.1,-.1)L(6.1,6.1) fprintf(o,".016 W 0 0 0 RGB S\n\n");
 fprintf(o,"showpage\n%c%cTrailer",'%','%'); fclose(o);
   system("epstopdf ExpQ2plot.eps");
   system(    "open ExpQ2plot.pdf");            
   getchar(); system("killall Preview");//for mac
 }

Latex generator of labels

% file ExpQ2plot.pdf should be generated with the code above in order to compile the Latex document below.
% Copyleft 2012 by Dmitrii Kouznetsov

\documentclass[12pt]{article} 
\usepackage{geometry} 
\usepackage{graphicx} 
\usepackage{rotating} 
\paperwidth 1212pt 
\paperheight 844pt 
\topmargin -92pt 
\oddsidemargin -80pt 
\textwidth 1604pt 
\textheight 1604pt 
\pagestyle {empty} 
\newcommand \sx {\scalebox} 
\newcommand \rot {\begin{rotate}} 
\newcommand \ero {\end{rotate}} 
\newcommand \ing {\includegraphics} 
\parindent 0pt
\pagestyle{empty} 
\begin{document}
{\begin{picture}(1202,802)
\put(590,792){\sx{4.2}{$y$}}
\put(590,698){\sx{4.2}{$7$}} 
\put(590,598){\sx{4.2}{$6$}}
\put(590,498){\sx{4.2}{$5$}}
\put(590,398){\sx{4.2}{$4$}}
\put(590,298){\sx{4.2}{$3$}}
\put(590,198){\sx{4.2}{$2$}}
\put(590,098){\sx{4.2}{$1$}}
\put(080,-22){\sx{4}{$-5$}}
\put(180,-22){\sx{4}{$-4$}}
\put(281,-22){\sx{4}{$-3$}}
\put(381,-22){\sx{4}{$-2$}}
\put(482,-22){\sx{4}{$-\!1$}}
\put(603.6,-22){\sx{4}{$0$}}
\put(703.7,-22){\sx{4}{$1$}}
\put(803.8,-22){\sx{4}{$2$}}
\put(903.9,-22){\sx{4}{$3$}}
\put(1004.0,-22){\sx{4}{$4$}}
\put(1104.1,-22){\sx{4}{$5$}}
\put(1192.2,-22){\sx{4.3}{$x$}}
%\put(0815,520){\sx{5.6}{\rot{78}$y\!=\!\exp(x)$\ero}}
\put(1034,490){\sx{5.6}{\rot{66}$y\!=\!\exp_{_{\!\!\sqrt{2}}}(x)$\ero}}
\put(1094,444){\sx{5.7}{\rot{45}$y\!=\!x$\ero}}
\put(10,10){\ing{ExpQ2plot}}
\end{picture}}
\end{document} 

Keywords

«Base sqrt2», «[[]]», «Book», «Exponential», «Fixed point», «Superfunctions», «[[]]»,

File history

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Date/TimeThumbnailDimensionsUserComment
current17:50, 20 June 2013Thumbnail for version as of 17:50, 20 June 20132,512 × 1,744 (175 KB)Maintenance script (talk | contribs)Importing image file

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