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Solving Ordinary Differential Equations I - Nonstiff Problems (Paperback, 2nd ed. 1993. Corr. 3rd printing 2009): Ernst Hairer,... Solving Ordinary Differential Equations I - Nonstiff Problems (Paperback, 2nd ed. 1993. Corr. 3rd printing 2009)
Ernst Hairer, Syvert P. Norsett, Gerhard Wanner
R2,197 Discovery Miles 21 970 Ships in 10 - 15 working days

This book deals with methods for solving nonstiff ordinary differential equations. The first chapter describes the historical development of the classical theory, and the second chapter includes a modern treatment of Runge-Kutta and extrapolation methods. Chapter three begins with the classical theory of multistep methods, and concludes with the theory of general linear methods. The reader will benefit from many illustrations, a historical and didactic approach, and computer programs which help him/her learn to solve all kinds of ordinary differential equations. This new edition has been rewritten and new material has been included.

Solving Ordinary Differential Equations I - Nonstiff Problems (Hardcover, 2nd Corrected ed. 1993, Corr. 4th printing 2008):... Solving Ordinary Differential Equations I - Nonstiff Problems (Hardcover, 2nd Corrected ed. 1993, Corr. 4th printing 2008)
Ernst Hairer, Syvert P. Norsett, Gerhard Wanner
R3,046 Discovery Miles 30 460 Ships in 10 - 15 working days

This book deals with methods for solving nonstiff ordinary differential equations. The first chapter describes the historical development of the classical theory from Newton, Leibniz, Euler, and Hamilton to limit cycles and strange attractors. In a second chapter a modern treatment of Runge-Kutta and extrapolation methods is given. Also included are continuous methods for dense output, parallel Runge-Kutta methods, special methods for Hamiltonian systems, second order differential equations and delay equations. The third chapter begins with the classical theory of multistep methods, and concludes with the theory of general linear methods. Many applications from physics, chemistry, biology, and astronomy together with computer programs and numerical comparisons are presented. This new edition has been rewritten, errors have been eliminated and new material has been included. The book will be immensely useful to graduate students and researchers in numerical analysis and scientific computing, and to scientists in the fields mentioned above.

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