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Network Science with Python and NetworkX Quick Start Guide

You're reading from   Network Science with Python and NetworkX Quick Start Guide Explore and visualize network data effectively

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Product type Paperback
Published in Apr 2019
Publisher Packt
ISBN-13 9781789955316
Length 190 pages
Edition 1st Edition
Languages
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Author (1):
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Edward L. Platt Edward L. Platt
Author Profile Icon Edward L. Platt
Edward L. Platt
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Table of Contents (15) Chapters Close

Preface 1. What is a Network? 2. Working with Networks in NetworkX FREE CHAPTER 3. From Data to Networks 4. Affiliation Networks 5. The Small Scale - Nodes and Centrality 6. The Big Picture - Describing Networks 7. In-Between - Communities 8. Social Networks and Going Viral 9. Simulation and Analysis 10. Networks in Space and Time 11. Visualization 12. Conclusion 13. Other Books You May Enjoy Appendix

Preferential attachment and heavy-tailed networks

From the internet to airport trips, many networks are characterized by a few nodes with many connections, and many nodes with very few connections. These networks are called heavy-tailed because, when a histogram of the node degrees is drawn, the high-connectivity nodes form a tail.

There are many ways to generate heavy-tailed networks, but one of the most widely-used is the Barabási-Albert preferential attachment model (Albert & Barabási, 1999). The preferential attachment model mimics processes where the rich get richer. Every time a node is added, it is randomly connected to existing nodes, with high-degree nodes being more likely.

In NetworkX, the barabasi_albert_graph() function generates preferential attachment networks. The following code shows an example of such a network with 35 nodes:

G_preferential_35 ...
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