a<p>Degree distribution is well-described by Poisson; therefore predictions by eq. 14 and 15 lead to the same result. <b><i>z = = 2>/z</i></b> for these systems.</p>b<p>Degree distributions are not well-described by Poisson. Predictions are made through eq. 14.</p>c<p>Error margins on the predicted values are reported.</p
The networks degree distributions with different m values for r = 15 on original network of average ...
<p>The degree distribution of the networks in log-log plot along with the fitted truncated power law...
<p>Left image: lin-log scales; right image: log-log scales. The distributions for the rewired graphs...
<p>The log-log plot of cumulative degree distributions of ALL (A) and CON (B) networks thresholded a...
<p>The network size is 900. The parameter α is 1.0, 0.7, 0.3 and 0.0 respectively. α = 1 corresponds...
<p>Right column shows illustrations of prototypical networks: the (ring) lattice small-world, the cl...
<p>The fitting model is the mixture generalized Poisson distribution (<a href="http://www.plosone.or...
<p>Networks predictions were interpreted in an undirected setting. The networks were created from th...
<p>The distribution of the number of connections at each node, or degree, is plotted for each of the...
<p>Results are presented for the log-linear Poisson graphical model without over-dispersion (A) and ...
<p>(A) Out-degree and (B) in-degree distributions for networks of size <i>N</i> = 1000. Numerical di...
<p>The size of the network is 900. The number of rewiring times <i>L</i> is 0, 90, 900 and 3600 resp...
<p>Degree distribution depicts the probability of nodes with a given degree occurring in the graph. ...
<p>The functions of the CC model are set as follows: <i>N</i>(<i>t</i>) = [e<sup>0.1<i>t</i></sup>],...
<p>Panel (a)∼(f) are the degree distribution and the fitting result of the network with a sparsity o...
The networks degree distributions with different m values for r = 15 on original network of average ...
<p>The degree distribution of the networks in log-log plot along with the fitted truncated power law...
<p>Left image: lin-log scales; right image: log-log scales. The distributions for the rewired graphs...
<p>The log-log plot of cumulative degree distributions of ALL (A) and CON (B) networks thresholded a...
<p>The network size is 900. The parameter α is 1.0, 0.7, 0.3 and 0.0 respectively. α = 1 corresponds...
<p>Right column shows illustrations of prototypical networks: the (ring) lattice small-world, the cl...
<p>The fitting model is the mixture generalized Poisson distribution (<a href="http://www.plosone.or...
<p>Networks predictions were interpreted in an undirected setting. The networks were created from th...
<p>The distribution of the number of connections at each node, or degree, is plotted for each of the...
<p>Results are presented for the log-linear Poisson graphical model without over-dispersion (A) and ...
<p>(A) Out-degree and (B) in-degree distributions for networks of size <i>N</i> = 1000. Numerical di...
<p>The size of the network is 900. The number of rewiring times <i>L</i> is 0, 90, 900 and 3600 resp...
<p>Degree distribution depicts the probability of nodes with a given degree occurring in the graph. ...
<p>The functions of the CC model are set as follows: <i>N</i>(<i>t</i>) = [e<sup>0.1<i>t</i></sup>],...
<p>Panel (a)∼(f) are the degree distribution and the fitting result of the network with a sparsity o...
The networks degree distributions with different m values for r = 15 on original network of average ...
<p>The degree distribution of the networks in log-log plot along with the fitted truncated power law...
<p>Left image: lin-log scales; right image: log-log scales. The distributions for the rewired graphs...