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Noise in Spatially Extended Systems (Paperback, Softcover reprint of the original 1st ed. 1999): Jordi Garcia-Ojalvo, Jose... Noise in Spatially Extended Systems (Paperback, Softcover reprint of the original 1st ed. 1999)
Jordi Garcia-Ojalvo, Jose Sancho
R2,967 Discovery Miles 29 670 Ships in 10 - 15 working days

Intended for graduates and researchers in physics, chemistry, biology, and applied mathematics, this book provides an up-to-date introduction to current research in fluctuations in spatially extended systems. It covers the theory of stochastic partial differential equations and gives an overview of the effects of external noise on dynamical systems with spatial degrees of freedom. Starting with a general introduction to noise-induced phenomena in dynamical systems, the text moves on to an extensive discussion of analytical and numerical tools needed to gain information from stochastic partial differential equations. It then turns to particular problems described by stochastic PDEs, covering a wide part of the rich phenomenology of spatially extended systems, such as nonequilibrium phase transitions, domain growth, pattern formation, and front propagation. The only prerequisite is a minimal background knowledge of the Langevin and Fokker-Planck equations.

Noise in Spatially Extended Systems (Hardcover, 1999 ed.): Jordi Garcia-Ojalvo, Jose Sancho Noise in Spatially Extended Systems (Hardcover, 1999 ed.)
Jordi Garcia-Ojalvo, Jose Sancho
R3,005 Discovery Miles 30 050 Ships in 10 - 15 working days

Intended for graduates and researchers in physics, chemistry, biology, and applied mathematics, this book provides an up-to-date introduction to current research in fluctuations in spatially extended systems. It covers the theory of stochastic partial differential equations and gives an overview of the effects of external noise on dynamical systems with spatial degrees of freedom. Starting with a general introduction to noise-induced phenomena in dynamical systems, the text moves on to an extensive discussion of analytical and numerical tools needed to gain information from stochastic partial differential equations. It then turns to particular problems described by stochastic PDEs, covering a wide part of the rich phenomenology of spatially extended systems, such as nonequilibrium phase transitions, domain growth, pattern formation, and front propagation. The only prerequisite is a minimal background knowledge of the Langevin and Fokker-Planck equations.

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