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Item Details
Title: INFORMATION THEORY AND STOCHASTICS FOR MULTISCALE NONLINEAR SYSTEMS
By: Andrew Majda, Marcus J. Grote
Format: Hardback

List price: £101.00


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ISBN 10: 0821838431
ISBN 13: 9780821838433
Publisher: AMERICAN MATHEMATICAL SOCIETY
Pub. date: 1 September, 2005
Edition: Illustrated edition
Series: CRM Monograph Series No. 25
Pages: 133
Description: Emphasizes the serendipity between modern applied mathematics and applications where rigorous analysis, the development of qualitative and/or asymptotic models, and numerical modeling interact to explain complex phenomena. This book introduces various issues in multiscale modeling.
Synopsis: This book introduces mathematicians to the fascinating mathematical interplay between ideas from stochastics and information theory and practical issues in studying complex multiscale nonlinear systems. It emphasizes the serendipity between modern applied mathematics and applications where rigorous analysis, the development of qualitative and/or asymptotic models, and numerical modeling all interact to explain complex phenomena. After a brief introduction to the emerging issues in multiscale modeling, the book has three main chapters. The first chapter is an introduction to information theory with novel applications to statistical mechanics, predictability, and Jupiter's Red Spot for geophysical flows.The second chapter discusses new mathematical issues regarding fluctuation-dissipation theorems for complex nonlinear systems including information flow, various approximations, and illustrates applications to various mathematical models. The third chapter discusses stochastic modeling of complex nonlinear systems. After a general discussion, a new elementary model, motivated by issues in climate dynamics, is utilized to develop a self-contained example of stochastic mode reduction.Based on A. Majda's Aisenstadt lectures at the University of Montreal, the book is appropriate for both pure and applied mathematics graduate students, postdocs and faculty, as well as interested researchers in other scientific disciplines. No background in geophysical flows is required.About the authors: Andrew Majda is a member of the National Academy of Sciences and has received numerous honors and awards, including the National Academy of Science Prize in Applied Mathematics, the John von Neumann Prize of the Society of Industrial and Applied Mathematics, the Gibbs Prize of the American Mathematical Society, and the Medal of the College de France. In the past several years at the Courant Institute, Majda and a multi-disciplinary faculty have created the Center for Atmosphere Ocean Science to promote cross-disciplinary research with modern applied mathematics in climate modeling and prediction. R. V. Abramov is a young researcher; he received his PhD in 2002. M. J. Grote received his Ph.D. under Joseph B. Keller at Stanford University in 1995.
Illustrations: Illustrations
Publication: US
Imprint: American Mathematical Society
Returns: Returnable
Some other items by this author:
A CELEBRATION OF MATHEMATICAL MODELING (HB)
A CELEBRATION OF MATHEMATICAL MODELING (PB)
AN INTRODUCTION TO TURBULENT DYNAMICAL SYSTEMS IN COMPLEX SYSTEMS (PB)
COMPUTATIONAL FLUID DYNAMICS AND REACTING GAS FLOWS
COMPUTATIONAL FLUID DYNAMICS AND REACTING GAS FLOWS (PB)
FILTERING COMPLEX TURBULENT SYSTEMS
FILTERING COMPLEX TURBULENT SYSTEMS (HB)
INTRODUCTION TO PDES AND WAVES FOR THE ATMOSPHERE AND OCEAN (PB)
MULTIDIMENSIONAL HYPERBOLIC PROBLEMS AND COMPUTATIONS (PB)
NONLINEAR DYNAMICS AND STATISTICAL THEORIES FOR BASIC GEOPHYSICAL FLOWS
NONLINEAR DYNAMICS AND STATISTICAL THEORIES FOR BASIC GEOPHYSICAL FLOWS (HB)
SELECTED PAPERS (HB)
SELECTED PAPERS (HB)
SELECTED PAPERS I (PB)
SELECTED PAPERS II (PB)
THE STABILITY OF MULTI-DIMENSIONAL SHOCK FRONTS (PB)
TROPICAL INTRASEASONAL VARIABILITY AND THE STOCHASTIC SKELETON METHOD (PB)
VORTICITY AND INCOMPRESSIBLE FLOW
VORTICITY AND INCOMPRESSIBLE FLOW (HB)
VORTICITY AND INCOMPRESSIBLE FLOW (PB)
WAVE MOTION: THEORY, MODELLING, AND COMPUTATION (PB)

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