Numerical Solution of Differential Equations
Autor Zhilin Li, Zhonghua Qiao, Tao Tangen Limba Engleză Paperback – 30 noi 2017
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Specificații
ISBN-13: 9781316615102
ISBN-10: 1316615103
Pagini: 300
Ilustrații: 57 b/w illus. 55 exercises
Dimensiuni: 189 x 246 x 17 mm
Greutate: 0.6 kg
Editura: Cambridge University Press
Locul publicării:Cambridge, United Kingdom
ISBN-10: 1316615103
Pagini: 300
Ilustrații: 57 b/w illus. 55 exercises
Dimensiuni: 189 x 246 x 17 mm
Greutate: 0.6 kg
Editura: Cambridge University Press
Locul publicării:Cambridge, United Kingdom
Cuprins
1. Introduction; Part I. Finite Difference Methods: 2. Finite difference methods for 1D boundary value problems; 3. Finite difference methods for 2D elliptic PDEs; 4. FD methods for parabolic PDEs; 5. Finite difference methods for hyperbolic PDEs; Part II. Finite Element Methods: 6. Finite element methods for 1D boundary value problems; 7. Theoretical foundations of the finite element method; 8. Issues of the FE method in one space dimension; 9. The finite element method for 2D elliptic PDEs; Appendix. Numerical solutions of initial value problems; References; Index.
Recenzii
'The authors of this volume on finite difference and finite element methods provide a sound and complete exposition of these two numerical techniques for solving differential equations. The text is divided into two independent parts, tackling the finite difference and finite element methods separately. The parts offer a balanced mix of theory, application, and examples to offer readers a thorough introduction to the material. They utilize MATLAB programming to provide various codes illustrating the applications and examples. … Overall, the textbook offers a solid introduction to finite difference methods and finite element methods that should be useful to graduate students in mathematics as well as to students in applied and interdisciplinary fields, such as engineering and economics, who need to solve differential equations numerically.' S. L. Sullivan, Choice
Descriere
A practical and concise guide to finite difference and finite element methods. Well-tested MATLAB® codes are available online.