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Invariant Manifolds for Physical and Chemical Kinetics (Hardcover, 2005 ed.): Alexander N Gorban, Iliya V. Karlin Invariant Manifolds for Physical and Chemical Kinetics (Hardcover, 2005 ed.)
Alexander N Gorban, Iliya V. Karlin
R3,237 Discovery Miles 32 370 Ships in 10 - 15 working days

By bringing together various ideas and methods for extracting the slow manifolds, the authors show that it is possible to establish a more macroscopic description in nonequilibrium systems. The book treats slowness as stability. A unifying geometrical viewpoint of the thermodynamics of slow and fast motion enables the development of reduction techniques, both analytical and numerical. Examples considered in the book range from the Boltzmann kinetic equation and hydrodynamics to the Fokker-Planck equations of polymer dynamics and models of chemical kinetics describing oxidation reactions. Special chapters are devoted to model reduction in classical statistical dynamics, natural selection, and exact solutions for slow hydrodynamic manifolds. The book will be a major reference source for both theoretical and applied model reduction. Intended primarily as a postgraduate-level text in nonequilibrium kinetics and model reduction, it will also be valuable to PhD students and researchers in applied mathematics, physics and various fields of engineering.

Invariant Manifolds for Physical and Chemical Kinetics (Paperback, Softcover reprint of hardcover 1st ed. 2005): Alexander N... Invariant Manifolds for Physical and Chemical Kinetics (Paperback, Softcover reprint of hardcover 1st ed. 2005)
Alexander N Gorban, Iliya V. Karlin
R2,993 Discovery Miles 29 930 Ships in 10 - 15 working days

By bringing together various ideas and methods for extracting the slow manifolds, the authors show that it is possible to establish a more macroscopic description in nonequilibrium systems. The book treats slowness as stability. A unifying geometrical viewpoint of the thermodynamics of slow and fast motion enables the development of reduction techniques, both analytical and numerical. Examples considered in the book range from the Boltzmann kinetic equation and hydrodynamics to the Fokker-Planck equations of polymer dynamics and models of chemical kinetics describing oxidation reactions. Special chapters are devoted to model reduction in classical statistical dynamics, natural selection, and exact solutions for slow hydrodynamic manifolds. The book will be a major reference source for both theoretical and applied model reduction. Intended primarily as a postgraduate-level text in nonequilibrium kinetics and model reduction, it will also be valuable to PhD students and researchers in applied mathematics, physics and various fields of engineering.

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