
Differential Equations
A Modeling Perspective
Wiley (Publisher)
2nd Edition
Published on 2. July 2004
Book
Hardback
736 pages
978-0-471-43332-3 (ISBN)
Description
This effective and practical new edition continues to focus on differential equations as a powerful tool in constructing mathematical models for the physical world. It emphasizes modeling and visualization of solutions throughout. Each chapter introduces a model and then goes on to look at solutions of the differential equations involved using an integrated analytical, numerical, and qualitative approach. The authors present the material in a way that's clear and understandable to students at all levels. Throughout the text the authors convey their enthusiasm and excitement for the study of ODEs.
More details
Product info
Book with CD-ROM
Edition
2. Auflage
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Edition type
New edition
Dimensions
Height: 26.2 cm
Width: 20.9 cm
Thickness: 3.2 cm
Weight
1559 gr
ISBN-13
978-0-471-43332-3 (9780471433323)
Schweitzer Classification
Other editions
Previous edition
Robert L. Borrelli | Courtney S. Coleman
Differential Equations
A Modeling Perspective. International Edition
Book
07/2004
2nd Edition
Wiley
€54.90
The article will not be published
Persons
Robert L. Borrelli is the author of Differential Equations: A Modeling Perspective, 2nd Edition, published by Wiley. Courtney S. Coleman is the author of Differential Equations: A Modeling Perspective, 2nd Edition, published by Wiley.
Content
Modeling and Differential Equations.
First-Order Differential Equations.
Second-Order Differential Equations.
Applications of Second-Order Differential Equations.
The Laplace Transform.
Linear Systems of Differential Equations.
Nonlinear Differential Systems.
Stability.
Nonlinear Systems: Cycles and Chaos.
Fourier Series and Partial Differential Equations.
Series Solutions.
Appendix A: Basic Theory of Initial Value Problems.
Appendix B: Background Information.
Index.
First-Order Differential Equations.
Second-Order Differential Equations.
Applications of Second-Order Differential Equations.
The Laplace Transform.
Linear Systems of Differential Equations.
Nonlinear Differential Systems.
Stability.
Nonlinear Systems: Cycles and Chaos.
Fourier Series and Partial Differential Equations.
Series Solutions.
Appendix A: Basic Theory of Initial Value Problems.
Appendix B: Background Information.
Index.