writing accelerator report

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caes 2017-03-21 05:15:13 -04:00
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\usepackage{caption} \usepackage{caption}
\usepackage[export]{adjustbox} \usepackage[export]{adjustbox}
\usepackage{float} \usepackage{float}
\usepackage{gensymb}
\bibliography{/home/caes/wmu/phy-4660/adv_lab.bib} \bibliography{/home/caes/wmu/phy-4660/adv_lab.bib}
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\begin{figure} \begin{figure}
\center \center
\includegraphics[width=6in]{../abundances.png} \includegraphics[width=4.5in]{../abundances.png}
\caption{Relative elemental abundances in the sun's photosphere. Lithium and fluorine are much less abundant than their neighbour elements. It is thought this is due to large probability cross-sections for a proton collision with these nuclei. \cite{Carroll&Ostlie}} \caption{Relative elemental abundances in the sun's photosphere. Lithium and fluorine are much less abundant than their neighbour elements. It is thought this is due to large probability cross-sections for a proton collision with these nuclei. \cite{Carroll&Ostlie}}
\end{figure} \end{figure}
\section{Nuclear Reactions and Detection Plan} \section{Nuclear Reactions and Detection Plan}
\label{sec:beamreactions} \label{sec:beamreactions}
We expect three reactions to occur
\begin{figure} \begin{figure}
\center \center
\includegraphics[width=4.5in]{../collision.png} \includegraphics[width=4.5in]{../collision.png}
\caption{In general, an incident particle collides with a target nucleus, resulting in an emitted particle and a residual nucleus. The backscattering experiments in this study have $\theta = 149\pm0.05\degree$ \cite{ADVLABACCEL}} \caption{In general, an incident particle collides with a target nucleus, resulting in an emitted particle and a residual nucleus. The backscattering experiments in this study have $\theta = 149\pm0.05\degree$ \cite{ADVLABACCEL}.}
\end{figure} \end{figure}