Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems
Self-organized criticality (SOC) is based upon the idea that complex behavior can develop spontaneously in certain multi-body systems whose dynamics vary abruptly. This book is a clear and concise introduction to the field of self-organized criticality, and contains an overview of the main research results. The author begins with an examination of what is meant by SOC, and the systems in which it can occur. He then presents and analyzes computer models to describe a number of systems, and he explains the different mathematical formalisms developed to understand SOC. The final chapter assesses the impact of this field of study, and highlights some key areas of new research. The author assumes no previous knowledge of the field, and the book contains several exercises. It will be ideal as a textbook for graduate students taking physics, engineering, or mathematical biology courses in nonlinear science or complexity.
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Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems
Self-organized criticality (SOC) is based upon the idea that complex behavior can develop spontaneously in certain multi-body systems whose dynamics vary abruptly. This book is a clear and concise introduction to the field of self-organized criticality, and contains an overview of the main research results. The author begins with an examination of what is meant by SOC, and the systems in which it can occur. He then presents and analyzes computer models to describe a number of systems, and he explains the different mathematical formalisms developed to understand SOC. The final chapter assesses the impact of this field of study, and highlights some key areas of new research. The author assumes no previous knowledge of the field, and the book contains several exercises. It will be ideal as a textbook for graduate students taking physics, engineering, or mathematical biology courses in nonlinear science or complexity.
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Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems

Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems

by Henrik Jeldtoft Jensen
Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems

Self-Organized Criticality: Emergent Complex Behavior in Physical and Biological Systems

by Henrik Jeldtoft Jensen

eBook

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Overview

Self-organized criticality (SOC) is based upon the idea that complex behavior can develop spontaneously in certain multi-body systems whose dynamics vary abruptly. This book is a clear and concise introduction to the field of self-organized criticality, and contains an overview of the main research results. The author begins with an examination of what is meant by SOC, and the systems in which it can occur. He then presents and analyzes computer models to describe a number of systems, and he explains the different mathematical formalisms developed to understand SOC. The final chapter assesses the impact of this field of study, and highlights some key areas of new research. The author assumes no previous knowledge of the field, and the book contains several exercises. It will be ideal as a textbook for graduate students taking physics, engineering, or mathematical biology courses in nonlinear science or complexity.

Product Details

ISBN-13: 9781107385092
Publisher: Cambridge University Press
Publication date: 01/13/1998
Series: Cambridge Lecture Notes in Physics , #10
Sold by: Barnes & Noble
Format: eBook
File size: 4 MB

Table of Contents

Preface; 1. Introduction; 2. Characterization of the SOC state; 3. Systems exhibiting SOC; 4. Computer models; 5. The search for a formalism; 6. Is it SOC or is it not?; Appendices.
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