Instabilities Chaos And Turbulence 2nd Edition

This book (2nd edition) is a self-contained introduction to a wide body of knowledge on nonlinear dynamics and chaos.

Instabilities  Chaos And Turbulence  2nd Edition

Instabilities Chaos And Turbulence 2nd Edition

This book (2nd edition) is a self-contained introduction to a wide body of knowledge on nonlinear dynamics and chaos. Manneville emphasises the understanding of basic concepts and the nontrivial character of nonlinear response, contrasting it with the intuitively simple linear response. He explains the theoretical framework using pedagogical examples from fluid dynamics, though prior knowledge of this field is not required. Heuristic arguments and worked examples replace most esoteric technicalities. Only basic understanding of mathematics and physics is required, at the level of what is currently known after one or two years of undergraduate training: elementary calculus, basic notions of linear algebra and ordinary differential calculus, and a few fundamental physical equations (specific complements are provided when necessary). Methods presented are of fully general use, which opens up ample windows on topics of contemporary interest. These include complex dynamical processes such as patterning, chaos control, mixing, and even the Earth's climate. Numerical simulations are proposed as a means to obtain deeper understanding of the intricacies induced by nonlinearities in our everyday environment, with hints on adapted modelling strategies and their implementation./a

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Instabilities, Chaos And Turbulence (2nd Edition)
Language: en
Pages: 456
Authors: Paul Manneville
Categories: Science
Type: BOOK - Published: 2010-07-21 - Publisher: World Scientific

This book (2nd edition) is a self-contained introduction to a wide body of knowledge on nonlinear dynamics and chaos. Manneville emphasises the understanding of basic concepts and the nontrivial character of nonlinear response, contrasting it with the intuitively simple linear response. He explains the theoretical framework using pedagogical examples from
Instabilities, Chaos and Turbulence
Language: en
Pages: 391
Authors: Paul Manneville
Categories: Science
Type: BOOK - Published: 2004 - Publisher: Imperial College Press

This book is an introduction to the application of nonlinear dynamics to problems of stability, chaos and turbulence arising in continuous media and their connection to dynamical systems. With an emphasis on the understanding of basic concepts, it should be of interest to nearly any science-oriented undergraduate and potentially to
The Science of Brass Instruments
Language: en
Pages: 443
Authors: Murray Campbell, Joël Gilbert, Arnold Myers
Categories: Acoustical engineering
Type: BOOK - Published: 2021 - Publisher: Springer Nature

This book provides an in-depth account of the fascinating but far from simple actions and processes that take place when a brass instrument is played. Written by three leading researchers in brass instrument acoustics who are also experienced brass players, it draws together the many recent advances in our understanding
Optical Remote Sensing of Ocean Hydrodynamics
Language: en
Pages: 280
Authors: Victor Raizer
Categories: Technology & Engineering
Type: BOOK - Published: 2019-03-04 - Publisher: CRC Press

Optical Remote Sensing is one of the main technologies used in sea surface monitoring. Optical Remote Sensing of Ocean Hydrodynamics investigates and demonstrates capabilities of optical remote sensing technology for enhanced observations and detection of ocean environments. It provides extensive knowledge of physical principles and capabilities of optical observations of
Extreme Events and Natural Hazards
Language: en
Pages: 380
Authors: A. Surjalal Sharma, Armin Bunde, Vijay P. Dimri, Daniel N. Baker
Categories: Science
Type: BOOK - Published: 2012-01-10 - Publisher: American Geophysical Union

Published by the American Geophysical Union as part of the Geophysical Monograph Series, Volume 196. Extreme Events and Natural Hazards: The Complexity Perspective examines recent developments in complexity science that provide a new approach to understanding extreme events. This understanding is critical to the development of strategies for the prediction

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