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Algorithmic thinking - Living quality diagram
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% https://tex.stackexchange.com/questions/376528/how-to-shade-or-highlight-the-lower-triangular-part-in-a-matrix-with-tikzpicture | |
% https://www.bu.edu/math/files/2013/08/tikzpgfmanual.pdf | |
\documentclass{article} | |
\usepackage{tikz} | |
\usepackage{amsmath,amsthm,amssymb} | |
\usetikzlibrary{backgrounds, matrix} | |
\usetikzlibrary{patterns} | |
\begin{document} | |
\begin{figure}[htb] | |
\centering | |
\resizebox{0.5\textwidth}{!}{% | |
\begin{tikzpicture} | |
\matrix (m) [matrix of math nodes, | |
left delimiter = |, | |
right delimiter = |, | |
nodes={minimum size=2em}, | |
ampersand replacement=\&] | |
{ | |
* \& * \& *\\ | |
* \& C \& B \\ | |
* \& A \& ? \\ | |
}; | |
\begin{pgfonlayer}{background} | |
\begin{scope}[blend group = soft light] | |
\draw[rounded corners, pattern=north east lines, opacity=.2] | |
(m-1-1.north) -| (m-1-2.east) -| (m-3-2.east) |- (m-3-1.south) -| (m-3-1.west) |- (m-1-1.north); | |
%\draw[rounded corners, dotted, fill=red!10!white, opacity=0.8] | |
% (m-1-1.north) -| (m-1-2.east) -| (m-2-2.east) |- (m-2-1.south) -| (m-2-1.west) |- (m-1-1.north); | |
\draw[rounded corners, pattern=north west lines, opacity=.2] | |
(m-1-1.north) -| (m-1-3.east) -| (m-2-3.east) |- (m-2-1.south) -| (m-2-1.west) |- (m-1-1.north); | |
\end{scope} | |
\end{pgfonlayer} | |
\end{tikzpicture} | |
} | |
\end{figure} | |
Let $\Delta$ be the sum of the values in the last row of interest, i.e. | |
\newcommand{\boxA}{% | |
\begin{tikzpicture}[scale=0.5]\node[rectangle,draw, pattern=north east lines] (r) at (0,0) {}; \end{tikzpicture}% | |
} | |
% https://tex.stackexchange.com/questions/569100/how-can-i-overlap-patterns-in-a-venn-diagram-legend | |
\newcommand{\boxC}{% | |
\begin{tikzpicture}[scale=0.5]\node[rectangle,draw, pattern=north west lines,postaction={pattern=north east lines}] (r) at (0,0) {}; \end{tikzpicture}% | |
} | |
\begin{align} | |
\Delta &=\boxA - \boxC \cr | |
&= A - C \cr | |
\end{align} | |
we have for the final value in the entry $?$ | |
\begin{align} | |
? &= B + \Delta + v \cr | |
&= B + A - C + v \cr | |
\end{align} | |
where $v$ is the value from table 6.2 | |
\end{document} |
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