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<title>deg_seq(1) - Compute the degree sequence of a graph</title>
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<a href="#NAME">NAME</a>
<a href="#SYNOPSIS">SYNOPSIS</a>
<a href="#DESCRIPTION">DESCRIPTION</a>
<a href="#PARAMETERS">PARAMETERS</a>
<a href="#OUTPUT">OUTPUT</a>
<a href="#SEE-ALSO">SEE ALSO</a>
<a href="#REFERENCES">REFERENCES</a>
<a href="#AUTHORS">AUTHORS</a>
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<ol class='man-decor man-head man head'>
<li class='tl'>deg_seq(1)</li>
<li class='tc'>www.complex-networks.net</li>
<li class='tr'>deg_seq(1)</li>
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<h2 id="NAME">NAME</h2>
<p class="man-name">
<code>deg_seq</code> - <span class="man-whatis">Compute the degree sequence of a graph</span>
</p>
<h2 id="SYNOPSIS">SYNOPSIS</h2>
<p><code>deg_seq</code> <var>graph_in</var></p>
<h2 id="DESCRIPTION">DESCRIPTION</h2>
<p><code>deg_seq</code> computes the degree sequence of <var>graph_in</var>.</p>
<h2 id="PARAMETERS">PARAMETERS</h2>
<dl>
<dt><var>graph_in</var></dt><dd> undirected input graph (edge list). If is equal to <code>-</code> (dash), read
the edge list from STDIN.</dd>
</dl>
<h2 id="OUTPUT">OUTPUT</h2>
<p>The program prints on STDOUT the degree sequence of <var>graph_in</var> in the
format:</p>
<pre><code> k_1
k_2
k_3
....
</code></pre>
<p>where <code>k_i</code> is the degree of the i-th node.</p>
<h2 id="SEE-ALSO">SEE ALSO</h2>
<p><span class="man-ref">deg_seq_w<span class="s">(1)</span></span>, <span class="man-ref">conf_model_deg<span class="s">(1)</span></span>, <span class="man-ref">fitmle<span class="s">(1)</span></span>, <span class="man-ref">power_law<span class="s">(1)</span></span></p>
<h2 id="REFERENCES">REFERENCES</h2>
<ul>
<li>V. Latora, V. Nicosia, G. Russo, "Complex Networks: Principles,
Methods and Applications", Chapter 10, Cambridge University Press
(2017)</li>
</ul>
<h2 id="AUTHORS">AUTHORS</h2>
<p>(c) Vincenzo 'KatolaZ' Nicosia 2009-2017 <code><v.nicosia@qmul.ac.uk></code>.</p>
<ol class='man-decor man-foot man foot'>
<li class='tl'>www.complex-networks.net</li>
<li class='tc'>September 2017</li>
<li class='tr'>deg_seq(1)</li>
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