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paper/basic_training.tex

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@@ -732,6 +732,7 @@ \subsubsection{Popular Thermostats}
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\end{enumerate}
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\subsubsection{Summary}
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To summarize, observe (Table \ref{tstat_summary}), as a general summary and guide for exploring the usage of various thermostats.
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Knowing the system you are simulating and the benefits and weaknesses to each thermostat is crucial to successfully and efficiently collect meaningful, physical data.
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If you are only interested in sampling structural properties such as radial distribution functions, many of the given thermostats can be used, including the Gaussian, Bussi, Andersen, Langevin, and Nos\'{e}-Hoover thermostats.
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If dynamical properties will be sampled, it is preferable to turn off the thermostat before beginning production cycles, but the Bussi and Nos\'{e}-Hoover thermostats (and in cases with implicit solvent, the Langevin thermostat), can often be used without overly affecting the calculation of dynamical properties.

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