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Complex networks: Structure and dynamics

TLDR
The major concepts and results recently achieved in the study of the structure and dynamics of complex networks are reviewed, and the relevant applications of these ideas in many different disciplines are summarized, ranging from nonlinear science to biology, from statistical mechanics to medicine and engineering.
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This article is published in Physics Reports.The article was published on 2006-02-01 and is currently open access. It has received 9441 citations till now. The article focuses on the topics: Network dynamics & Complex network.

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Dynamic Modeling of Cascading Failure in Power Systems

TL;DR: This work presents a dynamic simulation model of both power networks and protection systems, which can simulate a wider variety of cascading outage mechanisms relative to existing quasi-steady-state (QSS) models.
Journal ArticleDOI

Random Walks, Markov Processes and the Multiscale Modular Organization of Complex Networks

TL;DR: In this paper, the Markov Stability, a time-parametrized function defined in terms of the statistical properties of a Markov process taking place on the graph, is introduced to find multi-scale community structure in large networks.
Journal ArticleDOI

Network analysis of protein dynamics.

TL;DR: The results of the topological analysis of protein structures as molecular networks describing their small‐world character are reviewed, and the role of hubs and central network elements in governing enzyme activity, allosteric regulation, protein motor function, signal transduction and protein stability is reviewed.
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Proteomics, networks and connectivity indices.

TL;DR: This work reviews and comment on the challenges and new trends in the definition and applications of CIs in Proteomics, and focuses on CIs to describe Protein Interaction Networks or RNA co‐expression networks.
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Pattern transitions in spatial epidemics: Mechanisms and emergent properties

TL;DR: It is shown that pattern transitions relate to the complexity of spatial epidemics by, for example, being accompanied with phenomena such as coherence resonance and cyclic evolution, which provide valuable insights into disease prevention and control.
References
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Journal ArticleDOI

Optimization by Simulated Annealing

TL;DR: There is a deep and useful connection between statistical mechanics and multivariate or combinatorial optimization (finding the minimum of a given function depending on many parameters), and a detailed analogy with annealing in solids provides a framework for optimization of very large and complex systems.
Book

Computers and Intractability: A Guide to the Theory of NP-Completeness

TL;DR: The second edition of a quarterly column as discussed by the authors provides a continuing update to the list of problems (NP-complete and harder) presented by M. R. Garey and myself in our book "Computers and Intractability: A Guide to the Theory of NP-Completeness,” W. H. Freeman & Co., San Francisco, 1979.
Journal ArticleDOI

Collective dynamics of small-world networks

TL;DR: Simple models of networks that can be tuned through this middle ground: regular networks ‘rewired’ to introduce increasing amounts of disorder are explored, finding that these systems can be highly clustered, like regular lattices, yet have small characteristic path lengths, like random graphs.
Book

Matrix computations

Gene H. Golub
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The authors review the major concepts and results recently achieved in the study of the structure and dynamics of complex networks, and summarize the relevant applications of these ideas in many different disciplines, ranging from nonlinear science to biology, from statistical mechanics to medicine and engineering.