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mytheorem-graph-tikz.tex
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mytheorem-graph-tikz.tex
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\documentclass{standalone}
\usepackage[x11names, svgnames, rgb]{xcolor}
\usepackage[utf8]{inputenc}
\usepackage{tikz}
\usetikzlibrary{snakes,arrows,shapes}
\usepackage{rotating}
\usepackage{amsmath}
\begin{document}
\begin{sideways}
\begin{tikzpicture}[>=latex',line join=bevel,]
\pgfsetlinewidth{1bp}
%%
\pgfsetcolor{black}
% Edge: thm_cor1 -> sec_first
\draw [->] (560.06bp,72.5bp) .. controls (596.57bp,62.11bp) and (643.8bp,48.669bp) .. (691.74bp,35.028bp);
% Edge: thm_thm1 -> thm_cor2
\draw [->] (994.07bp,143.7bp) .. controls (994.07bp,135.98bp) and (994.07bp,126.71bp) .. (994.07bp,108.1bp);
% Edge: thm_rem1 -> thm_thm2
\draw [->] (334.07bp,287.7bp) .. controls (334.07bp,279.98bp) and (334.07bp,270.71bp) .. (334.07bp,252.1bp);
% Edge: thm_thm2 -> thm_thm1
\draw [->] (478.09bp,217.72bp) .. controls (588.35bp,206.03bp) and (739.72bp,189.98bp) .. (860.19bp,177.2bp);
% Edge: thm_lem1 -> thm_thm1
\draw [->] (1121.5bp,216.41bp) .. controls (1098.1bp,206.62bp) and (1068.4bp,194.15bp) .. (1034.2bp,179.83bp);
% Edge: thm_defn1 -> thm_thm1
\draw [->] (1432.8bp,219.25bp) .. controls (1343.2bp,207.76bp) and (1215.1bp,191.33bp) .. (1110.5bp,177.93bp);
% Edge: thm_cor2 -> sec_first
\draw [->] (936.08bp,72.5bp) .. controls (899.57bp,62.11bp) and (852.34bp,48.669bp) .. (804.4bp,35.028bp);
% Edge: thm_prop1 -> thm_thm1
\draw [->] (866.22bp,216.59bp) .. controls (889.65bp,206.77bp) and (919.63bp,194.2bp) .. (954.0bp,179.8bp);
% Node: sec_first
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (748.07bp,18.0bp) ellipse (172.47bp and 18.0bp);
\draw (748.07bp,18.0bp) node {Sectioning 1 Presentation of the main results};
\end{scope}
% Node: thm_thm1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (994.07bp,162.0bp) ellipse (248.86bp and 18.0bp);
\draw (994.07bp,162.0bp) node {Theorem 1 Well posedness of the Euler--Poisson--Makino system};
\end{scope}
% Node: thm_prop1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (827.07bp,234.0bp) ellipse (141.07bp and 18.0bp);
\draw (827.07bp,234.0bp) node {Proposition 1 Equivalence of norms};
\end{scope}
% Node: thm_lem1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (1161.07bp,234.0bp) ellipse (174.67bp and 18.0bp);
\draw (1161.1bp,234.0bp) node {Lemma 1 Estimates for products of functions};
\end{scope}
% Node: thm_defn1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (1540.07bp,234.0bp) ellipse (185.77bp and 18.0bp);
\draw (1540.1bp,234.0bp) node {Definition 1 Weighted fractional Sobolev spaces};
\end{scope}
% Node: thm_cor2
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (994.07bp,90.0bp) ellipse (245.06bp and 18.0bp);
\draw (994.07bp,90.0bp) node {Corollary 2 Local solutions of the original Euler--Poisson system};
\end{scope}
% Node: thm_thm2
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (334.07bp,234.0bp) ellipse (334.14bp and 18.0bp);
\draw (334.07bp,234.0bp) node {Theorem 2 Well posedness of first order hyperbolic symmetric systems in \$H\_\{s,delta \}\$};
\end{scope}
% Node: thm_cor1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (502.07bp,90.0bp) ellipse (229.36bp and 18.0bp);
\draw (502.07bp,90.0bp) node {Corollary 1 The static solutions of the Euler--Poisson system};
\end{scope}
% Node: thm_rem1
\begin{scope}
\definecolor{strokecol}{rgb}{0.0,0.0,0.0};
\pgfsetstrokecolor{strokecol}
\draw (334.07bp,306.0bp) ellipse (50.89bp and 18.0bp);
\draw (334.07bp,306.0bp) node {Remark 2};
\end{scope}
%
\end{tikzpicture}
\end{sideways}
% End of code
%
\end{document}
%