Differential Equations with Mathematica

Abell M.L. and Braselton J.P.

General Description

Differential Equations with Mathematica completely covers constructing, numerically computing, and approximating solutions to ordinary and partial differential equations. This book serves as a hands-on introduction to the subject matter through numerous examples that explain how to solve important applications using Mathematica.

Key Features

Serves as a handbook for constructing, numerically computing, and approximating solutions to differential equations with mathematica Text is computer platform independent

Among the over 100,000 users of Mathematica, 28% are engineers, 21% are computer scientists, 20% are physical scientists, 12% are mathematical scientists, and 12% are business, social, and life scientists. Two-thirds of the users are industry and government with a small (8%) but growing number or student users.

Contents: Introduction to Differential Equations. First-Order Ordinary Differential Equations. Applications of First-Order Ordinary Differential Equations. Higher Order Differential Equations. Applications of Higher Order Differential Equations. Power Series Solutions of Differential Equations. Applications of Series Solutions of Ordinary Differential Equations. Introduction to Transforms. Applications of the Laplace Transforms. Systems of Ordinary Differential Equations. Applications of Systems of Ordinary Differential Equations. Orthogonal Functions, Fourier Series, and Partial Differential Equations. Appendix. Glossary of Mathematica Commands. Selected References. Index.


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Last Update: July 8, 1997.