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+<head><title>1.1.1.0 node_activity_vectors.py</title>
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+ <h5 class="subsubsectionHead"><a
+ id="x7-60001.1.1"></a><span
+class="cmtt-10x-x-109">node</span><span
+class="cmtt-10x-x-109">_activity</span><span
+class="cmtt-10x-x-109">_vectors.py</span></h5>
+<!--l. 3--><p class="noindent" ><span
+class="cmbx-10x-x-109">NAME</span>
+<!--l. 3--><p class="indent" > <span
+class="cmbx-10x-x-109">node</span><span
+class="cmbx-10x-x-109">_activity</span><span
+class="cmbx-10x-x-109">_vectors.py </span>- compute the activity vectors of all the nodes of
+a multiplex.
+<!--l. 3--><p class="noindent" ><span
+class="cmbx-10x-x-109">SYNOPSYS</span>
+<!--l. 3--><p class="indent" > <span
+class="cmbx-10x-x-109">node</span><span
+class="cmbx-10x-x-109">_activity</span><span
+class="cmbx-10x-x-109">_vectors.py </span><span
+class="cmmi-10x-x-109">&#x003C;</span><span
+class="cmitt-10x-x-109">layer1</span><span
+class="cmmi-10x-x-109">&#x003E; </span><span
+class="cmitt-10x-x-109">[</span><span
+class="cmmi-10x-x-109">&#x003C;</span><span
+class="cmitt-10x-x-109">layer2</span><span
+class="cmmi-10x-x-109">&#x003E; </span><span
+class="cmitt-10x-x-109">...]</span>
+<!--l. 15--><p class="noindent" ><span
+class="cmbx-10x-x-109">DESCRIPTION</span>
+<!--l. 15--><p class="indent" > Compute and print on output the activity vectors of the nodes of a
+multiplex network, whose layers are given as input in the files <span
+class="cmti-10x-x-109">layer1</span>, <span
+class="cmti-10x-x-109">layer2</span>,
+etc.
+<!--l. 15--><p class="indent" > Each input file contains the (undirected) edge list of a layer, and each line is
+in the format:
+<!--l. 15--><p class="indent" > &#x00A0; <span
+class="cmti-10x-x-109">src</span><span
+class="cmti-10x-x-109">_ID dest</span><span
+class="cmti-10x-x-109">_ID</span>
+<!--l. 15--><p class="indent" > where <span
+class="cmti-10x-x-109">src</span><span
+class="cmti-10x-x-109">_ID </span>and <span
+class="cmti-10x-x-109">dest</span><span
+class="cmti-10x-x-109">_ID </span>are the IDs of the two endpoints of an
+edge.
+<!--l. 26--><p class="noindent" ><span
+class="cmbx-10x-x-109">OUTPUT</span>
+<!--l. 26--><p class="indent" > The program prints on <span
+class="cmtt-10x-x-109">stdout </span>a list of lines, where the n-th line contains
+the activity vector of the n-th node, i.e. a bit-string where each bit is
+set to &#8220;1&#8221; if the node is active on the corresponding layer, and to &#8220;0&#8221;
+otherwise.
+<!--l. 26--><p class="noindent" >As usual, node IDs start from zero and proceed sequentially, without gaps, i.e., if
+a node ID is not present in any of the layer files given as input, the program
+considers it as being isolated on all the layers, and will print on output a
+bit-string of zeros.
+<!--l. 28--><p class="noindent" ><span
+class="cmbx-10x-x-109">REFERENCE</span>
+<!--l. 28--><p class="indent" > V. Nicosia, V. Latora, &#8220;Measuring and modeling correlations in multiplex
+networks&#8221;, <span
+class="cmti-10x-x-109">Phys. Rev. E </span><span
+class="cmbx-10x-x-109">92</span>, 032805 (2015).
+<!--l. 28--><p class="indent" > Link to paper: <a
+href="http://journals.aps.org/pre/abstract/10.1103/PhysRevE.92.032805" class="url" ><span
+class="cmtt-10x-x-109">http://journals.aps.org/pre/abstract/10.1103/PhysRevE.92.032805</span></a>
+
+
+
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