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	<title>Ms2 - Revision history</title>
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	<updated>2026-04-28T13:58:04Z</updated>
	<subtitle>Revision history for this page on the wiki</subtitle>
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	<entry>
		<id>http://www.sklogwiki.org/SklogWiki/index.php?title=Ms2&amp;diff=19911&amp;oldid=prev</id>
		<title>Carl McBride: Added a few internal links</title>
		<link rel="alternate" type="text/html" href="http://www.sklogwiki.org/SklogWiki/index.php?title=Ms2&amp;diff=19911&amp;oldid=prev"/>
		<updated>2017-10-16T14:48:18Z</updated>

		<summary type="html">&lt;p&gt;Added a few internal links&lt;/p&gt;
&lt;table style=&quot;background-color: #fff; color: #202122;&quot; data-mw=&quot;interface&quot;&gt;
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				&lt;td colspan=&quot;2&quot; style=&quot;background-color: #fff; color: #202122; text-align: center;&quot;&gt;← Older revision&lt;/td&gt;
				&lt;td colspan=&quot;2&quot; style=&quot;background-color: #fff; color: #202122; text-align: center;&quot;&gt;Revision as of 16:48, 16 October 2017&lt;/td&gt;
				&lt;/tr&gt;&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot; id=&quot;mw-diff-left-l5&quot;&gt;Line 5:&lt;/td&gt;
&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot;&gt;Line 5:&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;is designed for the calculation of thermodynamic properties of bulk fluids in equilibrium.&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;is designed for the calculation of thermodynamic properties of bulk fluids in equilibrium.&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;ms2 features the two main molecular simulation techniques, [[molecular dynamics]] and [[Monte Carlo]]. It supports the calculation of vapor-liquid equilibria of pure fluids and multi-component [[mixtures]] described by rigid molecular models on the basis of the grand equilibrium method. Furthermore, it is capable of sampling various classical ensembles and yields numerous thermodynamic properties. To evaluate the chemical potential, Widom&#039;s test molecule method and gradual insertion are implemented. Transport properties are determined by equilibrium MD simulations following the Green-Kubo formalism.&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;ms2 features the two main molecular simulation techniques, [[molecular dynamics]] and [[Monte Carlo]]. It supports the calculation of vapor-liquid equilibria of pure fluids and multi-component [[mixtures]] described by &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;[[Molecular dynamics of rigid bodies | &lt;/ins&gt;rigid molecular models&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;]] &lt;/ins&gt;on the basis of the grand equilibrium method. Furthermore, it is capable of sampling various classical ensembles and yields numerous thermodynamic properties. To evaluate the &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;[[&lt;/ins&gt;chemical potential&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;]]&lt;/ins&gt;, &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;[[Widom test-particle method | &lt;/ins&gt;Widom&#039;s test molecule method&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;]] &lt;/ins&gt;and gradual insertion are implemented. &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;[[&lt;/ins&gt;Transport properties&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;]] &lt;/ins&gt;are determined by equilibrium MD simulations following the &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;[[Green-Kubo relations | &lt;/ins&gt;Green-Kubo&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;]] &lt;/ins&gt;formalism.&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;ms2 is written in Fortran90 and optimized for a fast execution on a broad range of computer architectures, spanning from single processor PCs over PC-clusters and vector computers to high-end parallel machines. The standard Message Passing Interface (MPI) is used for parallelization and ms2 is therefore easily portable onto a broad range of computing platforms. Feature tools facilitate the interaction with the code and the interpretation of input and output files. The accuracy and reliability of ms2 has been shown for a large variety of fluids in preceding work.&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;ms2 is written in Fortran90 and optimized for a fast execution on a broad range of computer architectures, spanning from single processor PCs over PC-clusters and vector computers to high-end parallel machines. The standard Message Passing Interface (MPI) is used for parallelization and ms2 is therefore easily portable onto a broad range of computing platforms. Feature tools facilitate the interaction with the code and the interpretation of input and output files. The accuracy and reliability of ms2 has been shown for a large variety of fluids in preceding work.&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;/table&gt;</summary>
		<author><name>Carl McBride</name></author>
	</entry>
	<entry>
		<id>http://www.sklogwiki.org/SklogWiki/index.php?title=Ms2&amp;diff=19910&amp;oldid=prev</id>
		<title>Carl McBride: Created page with &quot;{{Lowercase title}} &#039;&#039;&#039;ms2&#039;&#039;&#039;  &lt;ref&gt;[https://doi.org/10.1016/j.cpc.2011.04.026 Stephan Deublein, Bernhard Eckl, Jürgen Stoll, Sergey V.Lishchuk, Gabriela Guevara-Carrion, Col...&quot;</title>
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		<updated>2017-10-16T14:43:20Z</updated>

		<summary type="html">&lt;p&gt;Created page with &amp;quot;{{Lowercase title}} &amp;#039;&amp;#039;&amp;#039;ms2&amp;#039;&amp;#039;&amp;#039;  &amp;lt;ref&amp;gt;[https://doi.org/10.1016/j.cpc.2011.04.026 Stephan Deublein, Bernhard Eckl, Jürgen Stoll, Sergey V.Lishchuk, Gabriela Guevara-Carrion, Col...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;{{Lowercase title}}&lt;br /&gt;
&amp;#039;&amp;#039;&amp;#039;ms2&amp;#039;&amp;#039;&amp;#039; &lt;br /&gt;
&amp;lt;ref&amp;gt;[https://doi.org/10.1016/j.cpc.2011.04.026 Stephan Deublein, Bernhard Eckl, Jürgen Stoll, Sergey V.Lishchuk, Gabriela Guevara-Carrion, Colin W. Glass, Thorsten Merker,  Martin Bernreuther, Hans Hasse, Jadran Vrabec &amp;quot;ms2: A molecular simulation tool for thermodynamic properties&amp;quot;, Computer Physics Communications &amp;#039;&amp;#039;&amp;#039;182&amp;#039;&amp;#039;&amp;#039; pp. 2350-2367 (2011)]&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref&amp;gt;[https://doi.org/10.1016/j.cpc.2014.07.012 Colin W.Glass, Steffen Reiser, Gábor Rutkai, Stephan Deublein, Andreas Köster, Gabriela Guevara-Carrion, Amer Wafai, Martin Horsch, Martin Bernreuther, Thorsten Windmann, Hans Hasse, Jadran Vrabec &amp;quot;ms2: A molecular simulation tool for thermodynamic properties, new version release&amp;quot;, Computer Physics Communications &amp;#039;&amp;#039;&amp;#039;185&amp;#039;&amp;#039;&amp;#039; pp. 3302-3306 (2014)]&amp;lt;/ref&amp;gt;&lt;br /&gt;
is designed for the calculation of thermodynamic properties of bulk fluids in equilibrium.&lt;br /&gt;
&lt;br /&gt;
ms2 features the two main molecular simulation techniques, [[molecular dynamics]] and [[Monte Carlo]]. It supports the calculation of vapor-liquid equilibria of pure fluids and multi-component [[mixtures]] described by rigid molecular models on the basis of the grand equilibrium method. Furthermore, it is capable of sampling various classical ensembles and yields numerous thermodynamic properties. To evaluate the chemical potential, Widom&amp;#039;s test molecule method and gradual insertion are implemented. Transport properties are determined by equilibrium MD simulations following the Green-Kubo formalism.&lt;br /&gt;
&lt;br /&gt;
ms2 is written in Fortran90 and optimized for a fast execution on a broad range of computer architectures, spanning from single processor PCs over PC-clusters and vector computers to high-end parallel machines. The standard Message Passing Interface (MPI) is used for parallelization and ms2 is therefore easily portable onto a broad range of computing platforms. Feature tools facilitate the interaction with the code and the interpretation of input and output files. The accuracy and reliability of ms2 has been shown for a large variety of fluids in preceding work.&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references/&amp;gt;&lt;br /&gt;
==External links==&lt;br /&gt;
*[http://www.ms-2.de/home.html ms2 - A Molecular Simulation Program for Thermodynamic Properties]&lt;br /&gt;
&lt;br /&gt;
[[Category: Materials modelling and computer simulation codes]]&lt;/div&gt;</summary>
		<author><name>Carl McBride</name></author>
	</entry>
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