
Chaos: From Simple Models To Complex Systems
FR SIMPLE MODELS TO COMPLEX..(V17)
World Scientific Publishing Co Pte Ltd
Published on 3. September 2009
Book
Hardback
480 pages
978-981-4277-65-5 (ISBN)
Description
Chaos: from simple models to complex systems aims to guide science and engineering students through chaos and nonlinear dynamics from classical examples to the most recent fields of research. The first part, intended for undergraduate and graduate students, is a gentle and self-contained introduction to the concepts and main tools for the characterization of deterministic chaotic systems, with emphasis to statistical approaches. The second part can be used as a reference by researchers as it focuses on more advanced topics including the characterization of chaos with tools of information theory and applications encompassing fluid and celestial mechanics, chemistry and biology.The book is novel in devoting attention to a few topics often overlooked in introductory textbooks and which are usually found only in advanced surveys such as: information and algorithmic complexity theory applied to chaos and generalization of Lyapunov exponents to account for spatiotemporal and non-infinitesimal perturbations.The selection of topics, numerous illustrations, exercises and proposals for computer experiments make the book ideal for both introductory and advanced courses.
More details
Series
Language
English
Place of publication
Singapore
Singapore
Target group
College/higher education
Students and researchers in science (physics, chemistry, mathematics, biology) and engineering.
Dimensions
Height: 250 mm
Width: 175 mm
Thickness: 30 mm
Weight
1004 gr
ISBN-13
978-981-4277-65-5 (9789814277655)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Author
Univ Of Roma "La Sapienza", Italy
Infm-cnr, Italy
Infm-cnr, Italy
Content
First Encounter with Chaos; The Language of Dynamical Systems; Examples of Chaotic Behaviors; Probabilistic Approach to Chaos; Characterization of Chaotic Dynamical Systems; From Order to Chaos in Dissipative Systems; Chaos in Hamiltonian Systems; Chaos and Information Theory; Coarse-Grained Information and Large Scale Predictability; Chaos, Numerical Computations and Experiments; Chaos in Few-Degrees of Freedom Systems; Spatiotemporal Chaos; Turbulence as a Dynamical Systems Problem; Chaos and Statistical Mechanics: Fermi-Pasta-Ulam a Case Study.