[pointprocesses] fixed exercise code references
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@ -1,6 +1,6 @@
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\documentclass[12pt,a4paper,pdftex]{exam}
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\newcommand{\exercisetopic}{Point Processes}
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\newcommand{\exercisetopic}{Point processes}
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\newcommand{\exercisenum}{11}
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\newcommand{\exercisedate}{January 19th, 2021}
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@ -116,6 +116,7 @@
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%\colorbox{white}{\includegraphics[width=1\textwidth]{poissonisihist}}
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\end{solution}
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\continuepage
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% XXX Add return map!!! XXX
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\part Write a function that computes the serial correlations of
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interspike intervals for lags up to \code{maxlag}. The serial
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@ -144,7 +145,6 @@
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\end{parts}
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\continuepage
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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\question \qt{Statistics of spike counts}
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Now let's have a look at the statistics of the spike counts.
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@ -164,7 +164,7 @@
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\begin{solution}
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\lstinputlisting{counts.m}
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\newsolutionpage
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\lstinputlisting{spikecounthists.m}
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\lstinputlisting{spikecountshists.m}
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\colorbox{white}{\includegraphics[width=1\textwidth]{spikecountshists}}
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\end{solution}
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@ -103,7 +103,7 @@ f\"ur gen\"ugend kleine $\Delta t$.
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soll. Hinweis: es gibt eine \code{matlab} Funktion, die die
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Fakult\"at $n!$ berechnet.
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\begin{solution}
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\lstinputlisting{counthist.m}
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%\lstinputlisting{counthist.m}
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\colorbox{white}{\includegraphics[width=0.48\textwidth]{poissoncounthistdist100hz10ms}}
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\colorbox{white}{\includegraphics[width=0.48\textwidth]{poissoncounthistdist100hz100ms}}
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\end{solution}
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