Automatic commit of successful build 20180405-15:59:56

This commit is contained in:
Philipp Homan yoga ubuntu 17.10 2018-04-05 15:59:56 +02:00
parent ea668ed59c
commit c120500a45
7 changed files with 55 additions and 55 deletions

View File

@ -10,10 +10,10 @@ posters
\item With org-mode we can populate the poster with code, graphs and numbers
from inline code in languages such as R, python, Matlab and even shell
scripting
\item For example, this poster was created on 2018-04-04 12:21 on
\item For example, this poster was created on 2018-04-05 15:59 on
Ubuntu 17.10.
\item Inline code could look like this (which will produce a graph;
Fig. \ref{fig:org8e3f41e}):
Fig. \ref{fig:orgd999323}):
\end{itemize}
\begin{columns}
@ -29,7 +29,7 @@ hist(x2, col="blue", add=TRUE)
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{3.png}
\caption{\label{fig:org8e3f41e}
\caption{\label{fig:orgd999323}
This is the output.}
\end{figure}
\end{column}
@ -43,7 +43,7 @@ This is the output.}
capabilities
\item Some code to process the first vector from above to make a table out
of its summary could look like this, which would result in a little
table (Table \ref{tab:orgd66dcb7}) :
table (Table \ref{tab:org3b1c59c}) :
\end{itemize}
\begin{columns}
@ -62,7 +62,7 @@ mutate(name=c("x1", "x2"))
\vspace{2cm}
\begin{table}[htbp]
\caption{\label{tab:orgd66dcb7}
\caption{\label{tab:org3b1c59c}
A table summarizing the two distributions.}
\centering
\begin{tabular}{rrrrrrl}
@ -83,7 +83,7 @@ minimum & q1 & median & mean & q3 & maximum & name\\
\begin{block}{Graphics}
\begin{itemize}
\item We can use shell scripting to grab an image with curl from the
internet (Fig. \ref{fig:orga7f94bb}):
internet (Fig. \ref{fig:org5db1ca6}):
\end{itemize}
\begin{columns}
@ -100,7 +100,7 @@ curl -0 https://www.gnu.org/software/emacs/images/emacs.png
\begin{figure}[htbp]
\centering
\includegraphics[page=9,width=0.2\textwidth]{emacs.png}
\caption{\label{fig:orga7f94bb}
\caption{\label{fig:org5db1ca6}
This is the downloaded image.}
\end{figure}
\end{column}
@ -146,7 +146,7 @@ derived as follows:
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4l.png}
\caption{\label{fig:org0b56e4b}
\caption{\label{fig:org4d1aa8d}
This is the left figure of a two-column block, showing the density of \(x1\).}
\end{figure}
\end{column}
@ -156,7 +156,7 @@ This is the left figure of a two-column block, showing the density of \(x1\).}
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4r.png}
\caption{\label{fig:org5983ee2}
\caption{\label{fig:org46ae343}
This is the right figure. It shows the density of \(x2\).}
\end{figure}
\end{column}

View File

@ -17,25 +17,25 @@
\providecommand*\HyPL@Entry[1]{}
\HyPL@Entry{0<</P(1)>>}
\providecommand \oddpage@label [2]{}
\newlabel{sec:org954d466<1>}{{1}{1}{}{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {sec:org954d466<1>}{1}}
\newlabel{sec:org954d466}{{1}{1}{}{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {sec:org954d466}{1}}
\newlabel{sec:orgf567eda<1>}{{1}{1}{}{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {sec:orgf567eda<1>}{1}}
\newlabel{sec:orgf567eda}{{1}{1}{}{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {sec:orgf567eda}{1}}
\providecommand*\caption@xref[2]{\@setref\relax\@undefined{#1}}
\newlabel{fig:org8e3f41e}{{1}{1}{This is the output.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org8e3f41e}{1}}
\newlabel{tab:orgd66dcb7}{{1}{1}{A table summarizing the two distributions.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {tab:orgd66dcb7}{1}}
\newlabel{fig:orga7f94bb}{{2}{1}{This is the downloaded image.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:orga7f94bb}{1}}
\newlabel{fig:orgd999323}{{1}{1}{This is the output.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:orgd999323}{1}}
\newlabel{tab:org3b1c59c}{{1}{1}{A table summarizing the two distributions.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {tab:org3b1c59c}{1}}
\newlabel{fig:org5db1ca6}{{2}{1}{This is the downloaded image.\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org5db1ca6}{1}}
\@writefile{snm}{\beamer@slide {eq:KL}{1}}
\newlabel{eq:KL}{{1}{1}{}{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {eq:KL2}{1}}
\newlabel{eq:KL2}{{2}{1}{}{Doc-Start}{}}
\newlabel{fig:org0b56e4b}{{3}{1}{This is the left figure of a two-column block, showing the density of \(x1\).\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org0b56e4b}{1}}
\newlabel{fig:org5983ee2}{{4}{1}{This is the right figure. It shows the density of \(x2\).\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org5983ee2}{1}}
\newlabel{fig:org4d1aa8d}{{3}{1}{This is the left figure of a two-column block, showing the density of \(x1\).\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org4d1aa8d}{1}}
\newlabel{fig:org46ae343}{{4}{1}{This is the right figure. It shows the density of \(x2\).\relax }{Doc-Start}{}}
\@writefile{snm}{\beamer@slide {fig:org46ae343}{1}}
\@writefile{nav}{\headcommand {\slideentry {0}{0}{1}{1/1}{}{0}}}
\@writefile{nav}{\headcommand {\beamer@framepages {1}{1}}}
\@writefile{nav}{\headcommand {\beamer@partpages {1}{1}}}

View File

@ -1,4 +1,4 @@
This is XeTeX, Version 3.14159265-2.6-0.99998 (TeX Live 2017/Debian) (preloaded format=xelatex 2018.3.30) 4 APR 2018 12:21
This is XeTeX, Version 3.14159265-2.6-0.99998 (TeX Live 2017/Debian) (preloaded format=xelatex 2018.3.30) 5 APR 2018 15:59
entering extended mode
\write18 enabled.
%&-line parsing enabled.

Binary file not shown.

View File

@ -1,9 +1,9 @@
\beamer@slide {sec:org954d466<1>}{1}
\beamer@slide {sec:org954d466}{1}
\beamer@slide {fig:org8e3f41e}{1}
\beamer@slide {tab:orgd66dcb7}{1}
\beamer@slide {fig:orga7f94bb}{1}
\beamer@slide {sec:orgf567eda<1>}{1}
\beamer@slide {sec:orgf567eda}{1}
\beamer@slide {fig:orgd999323}{1}
\beamer@slide {tab:org3b1c59c}{1}
\beamer@slide {fig:org5db1ca6}{1}
\beamer@slide {eq:KL}{1}
\beamer@slide {eq:KL2}{1}
\beamer@slide {fig:org0b56e4b}{1}
\beamer@slide {fig:org5983ee2}{1}
\beamer@slide {fig:org4d1aa8d}{1}
\beamer@slide {fig:org46ae343}{1}

View File

@ -1,4 +1,4 @@
% Created 2018-04-04 Wed 12:21
% Created 2018-04-05 Thu 15:59
% Intended LaTeX compiler: pdflatex
\documentclass[final]{beamer}
\usetheme{ph}
@ -37,11 +37,11 @@ Philipp Homan$^{1}$
\normalsize{Hempstead, NY}
}
\usetheme{default}
\date{2018-04-04 12:21}
\date{2018-04-05 15:59}
\title{Using org-mode for scientific posters}
\begin{document}
\begin{frame}[fragile,label={sec:org954d466}]{}
\begin{frame}[fragile,label={sec:orgf567eda}]{}
\begin{columns}
\begin{column}[t]{0.45\columnwidth}
\begin{block}{Background}
@ -53,10 +53,10 @@ posters
\item With org-mode we can populate the poster with code, graphs and numbers
from inline code in languages such as R, python, Matlab and even shell
scripting
\item For example, this poster was created on 2018-04-04 12:21 on
\item For example, this poster was created on 2018-04-05 15:59 on
Ubuntu 17.10.
\item Inline code could look like this (which will produce a graph;
Fig. \ref{fig:org8e3f41e}):
Fig. \ref{fig:orgd999323}):
\end{itemize}
\begin{columns}
@ -72,7 +72,7 @@ hist(x2, col="blue", add=TRUE)
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{3.png}
\caption{\label{fig:org8e3f41e}
\caption{\label{fig:orgd999323}
This is the output.}
\end{figure}
\end{column}
@ -86,7 +86,7 @@ This is the output.}
capabilities
\item Some code to process the first vector from above to make a table out
of its summary could look like this, which would result in a little
table (Table \ref{tab:orgd66dcb7}) :
table (Table \ref{tab:org3b1c59c}) :
\end{itemize}
\begin{columns}
@ -105,7 +105,7 @@ mutate(name=c("x1", "x2"))
\vspace{2cm}
\begin{table}[htbp]
\caption{\label{tab:orgd66dcb7}
\caption{\label{tab:org3b1c59c}
A table summarizing the two distributions.}
\centering
\begin{tabular}{rrrrrrl}
@ -126,7 +126,7 @@ minimum & q1 & median & mean & q3 & maximum & name\\
\begin{block}{Graphics}
\begin{itemize}
\item We can use shell scripting to grab an image with curl from the
internet (Fig. \ref{fig:orga7f94bb}):
internet (Fig. \ref{fig:org5db1ca6}):
\end{itemize}
\begin{columns}
@ -143,7 +143,7 @@ curl -0 https://www.gnu.org/software/emacs/images/emacs.png
\begin{figure}[htbp]
\centering
\includegraphics[page=9,width=0.2\textwidth]{emacs.png}
\caption{\label{fig:orga7f94bb}
\caption{\label{fig:org5db1ca6}
This is the downloaded image.}
\end{figure}
\end{column}
@ -189,7 +189,7 @@ derived as follows:
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4l.png}
\caption{\label{fig:org0b56e4b}
\caption{\label{fig:org4d1aa8d}
This is the left figure of a two-column block, showing the density of \(x1\).}
\end{figure}
\end{column}
@ -199,7 +199,7 @@ This is the left figure of a two-column block, showing the density of \(x1\).}
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4r.png}
\caption{\label{fig:org5983ee2}
\caption{\label{fig:org46ae343}
This is the right figure. It shows the density of \(x2\).}
\end{figure}
\end{column}

View File

@ -1,4 +1,4 @@
% Created 2018-04-04 Wed 12:05
% Created 2018-04-04 Wed 12:21
% Intended LaTeX compiler: pdflatex
\documentclass[final]{beamer}
\usetheme{ph}
@ -37,11 +37,11 @@ Philipp Homan$^{1}$
\normalsize{Hempstead, NY}
}
\usetheme{default}
\date{2018-04-04 12:05}
\date{2018-04-04 12:21}
\title{Using org-mode for scientific posters}
\begin{document}
\begin{frame}[fragile,label={sec:org2d306a8}]{}
\begin{frame}[fragile,label={sec:org954d466}]{}
\begin{columns}
\begin{column}[t]{0.45\columnwidth}
\begin{block}{Background}
@ -53,10 +53,10 @@ posters
\item With org-mode we can populate the poster with code, graphs and numbers
from inline code in languages such as R, python, Matlab and even shell
scripting
\item For example, this poster was created on 2018-04-04 12:05 on
\item For example, this poster was created on 2018-04-04 12:21 on
Ubuntu 17.10.
\item Inline code could look like this (which will produce a graph;
Fig. \ref{fig:org1e6e9a8}):
Fig. \ref{fig:org8e3f41e}):
\end{itemize}
\begin{columns}
@ -72,7 +72,7 @@ hist(x2, col="blue", add=TRUE)
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{3.png}
\caption{\label{fig:org1e6e9a8}
\caption{\label{fig:org8e3f41e}
This is the output.}
\end{figure}
\end{column}
@ -86,7 +86,7 @@ This is the output.}
capabilities
\item Some code to process the first vector from above to make a table out
of its summary could look like this, which would result in a little
table (Table \ref{tab:org79ade92}) :
table (Table \ref{tab:orgd66dcb7}) :
\end{itemize}
\begin{columns}
@ -105,7 +105,7 @@ mutate(name=c("x1", "x2"))
\vspace{2cm}
\begin{table}[htbp]
\caption{\label{tab:org79ade92}
\caption{\label{tab:orgd66dcb7}
A table summarizing the two distributions.}
\centering
\begin{tabular}{rrrrrrl}
@ -126,7 +126,7 @@ minimum & q1 & median & mean & q3 & maximum & name\\
\begin{block}{Graphics}
\begin{itemize}
\item We can use shell scripting to grab an image with curl from the
internet (Fig. \ref{fig:orgf5c409c}):
internet (Fig. \ref{fig:orga7f94bb}):
\end{itemize}
\begin{columns}
@ -143,7 +143,7 @@ curl -0 https://www.gnu.org/software/emacs/images/emacs.png
\begin{figure}[htbp]
\centering
\includegraphics[page=9,width=0.2\textwidth]{emacs.png}
\caption{\label{fig:orgf5c409c}
\caption{\label{fig:orga7f94bb}
This is the downloaded image.}
\end{figure}
\end{column}
@ -189,7 +189,7 @@ derived as follows:
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4l.png}
\caption{\label{fig:orgd7d362e}
\caption{\label{fig:org0b56e4b}
This is the left figure of a two-column block, showing the density of \(x1\).}
\end{figure}
\end{column}
@ -199,7 +199,7 @@ This is the left figure of a two-column block, showing the density of \(x1\).}
\begin{figure}[htbp]
\centering
\includegraphics[width=.9\linewidth]{4r.png}
\caption{\label{fig:orgb7b3a82}
\caption{\label{fig:org5983ee2}
This is the right figure. It shows the density of \(x2\).}
\end{figure}
\end{column}