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<div class="section" id="newton-command">
<span id="index-0"></span><h1>newton command<a class="headerlink" href="#newton-command" title="Permalink to this headline"></a></h1>
<div class="section" id="syntax">
<h2>Syntax<a class="headerlink" href="#syntax" title="Permalink to this headline"></a></h2>
<div class="highlight-python"><div class="highlight"><pre>newton flag
newton flag1 flag2
</pre></div>
</div>
<ul class="simple">
<li>flag = <em>on</em> or <em>off</em> for both pairwise and bonded interactions</li>
<li>flag1 = <em>on</em> or <em>off</em> for pairwise interactions</li>
<li>flag2 = <em>on</em> or <em>off</em> for bonded interactions</li>
</ul>
</div>
<div class="section" id="examples">
<h2>Examples<a class="headerlink" href="#examples" title="Permalink to this headline"></a></h2>
<div class="highlight-python"><div class="highlight"><pre>newton off
newton on off
</pre></div>
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<div class="section" id="description">
<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline"></a></h2>
<p>This command turns Newton&#8217;s 3rd law <em>on</em> or <em>off</em> for pairwise and
bonded interactions. For most problems, setting Newton&#8217;s 3rd law to
<em>on</em> means a modest savings in computation at the cost of two times
more communication. Whether this is faster depends on problem size,
force cutoff lengths, a machine&#8217;s compute/communication ratio, and how
many processors are being used.</p>
<p>Setting the pairwise newton flag to <em>off</em> means that if two
interacting atoms are on different processors, both processors compute
their interaction and the resulting force information is not
communicated. Similarly, for bonded interactions, newton <em>off</em> means
that if a bond, angle, dihedral, or improper interaction contains
atoms on 2 or more processors, the interaction is computed by each
processor.</p>
<p>LAMMPS should produce the same answers for any newton flag settings,
except for round-off issues.</p>
<p>With <a class="reference internal" href="run_style.html"><em>run_style</em></a> <em>respa</em> and only bonded interactions
(bond, angle, etc) computed in the innermost timestep, it may be
faster to turn newton <em>off</em> for bonded interactions, to avoid extra
communication in the innermost loop.</p>
</div>
<div class="section" id="restrictions">
<h2>Restrictions<a class="headerlink" href="#restrictions" title="Permalink to this headline"></a></h2>
<p>The newton bond setting cannot be changed after the simulation box is
defined by a <a class="reference internal" href="read_data.html"><em>read_data</em></a> or
<a class="reference internal" href="create_box.html"><em>create_box</em></a> command.</p>
</div>
<div class="section" id="related-commands">
<h2>Related commands<a class="headerlink" href="#related-commands" title="Permalink to this headline"></a></h2>
<p><a class="reference internal" href="run_style.html"><em>run_style</em></a> respa</p>
</div>
<div class="section" id="default">
<h2>Default<a class="headerlink" href="#default" title="Permalink to this headline"></a></h2>
<div class="highlight-python"><div class="highlight"><pre>newton on
</pre></div>
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