
Applications of Lie's Theory of Ordinary and Partial Differential Equations
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Estimated delivery time: In stock at the publisher, but not at Prospero's office. Delivery time approx. 3-5 weeks.
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Product details:
- Edition number 1
- Publisher CRC Press
- Date of Publication 1 January 1998
- ISBN 9780750305310
- Binding Paperback
- No. of pages240 pages
- Size 216x138 mm
- Weight 362 g
- Language English
- Illustrations 16 Illustrations, black & white 0
Categories
Short description:
Applications of Lie's Theory of Ordinary and Partial Differential Equations provides a concise, simple introduction to the application of Lie's group theory to the solution of differential equations. The author emphasizes clarity and immediacy of understanding rather than encyclopedic completeness, rigor, and generality. This enables readers to quickly grasp the essentials and start applying the methods to find solutions. The book includes worked examples and problems from a wide range of scientific and engineering fields.
MoreLong description:
Lie's group theory of differential equations unifies the many ad hoc methods known for solving differential equations and provides powerful new ways to find solutions. The theory has applications to both ordinary and partial differential equations and is not restricted to linear equations. Applications of Lie's Theory of Ordinary and Partial Differential Equations provides a concise, simple introduction to the application of Lie's theory to the solution of differential equations. The author emphasizes clarity and immediacy of understanding rather than encyclopedic completeness, rigor, and generality. This enables readers to quickly grasp the essentials and start applying the methods to find solutions. The book includes worked examples and problems from a wide range of scientific and engineering fields.
MoreTable of Contents:
Conventions used in this book. One-parameter groups. First-order ordinary differential equations. Second-order ordinary differential equations. Similarity solutions of partial differential equations. Traveling-wave solutions. Approximate methods. Epilogue. Appendices. Solutions to the problems. References. Symbols and their definitions.
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