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Differential Equations with Computer Lab Experiments

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ISBN-10: 0534351735

ISBN-13: 9780534351731

Edition: 2nd 1998 (Revised)

Authors: Dennis G. Zill

List price: $227.95
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This text by best-selling author Dennis G. Zill provides an alternative to more traditional differential equations texts by addressing the growing influence of technology in teaching differential equations. This book will appeal to instructors who wish to integrate the computer into teaching theory and applications of differential equations. Qualitative and numerical aspects of differential equations are introduced early in the text. In this edition, computer lab experiments, projects, and writing assignments now appear in a section at the end of each chapter.
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Book details

List price: $227.95
Edition: 2nd
Copyright year: 1998
Publisher: Brooks/Cole
Publication date: 2/10/1998
Binding: Hardcover
Pages: 478
Size: 8.50" wide x 9.75" long x 0.75" tall
Weight: 2.2
Language: English

Getting Started
Definitions and Terminology
Initial-Value Problems
First-Order Equations
What a First-Order Equation Can Tell Us
Separable Variables
Linear Equations
Mathematical Models
Numerical Solutions
Higher-Order Equations
Linear Equations
Homogeneous Linear Equations with Constant Coefficients
Phase Portraits and Stability
Nonhomogeneous Linear Equations
Cauchy-Euler Equation
Mathematical Models: Initial-Value Problems
Mathematical Models: Boundary-Value Problems
Systems of Differential Equations-Elimination Method
Numerical Solutions
Nonlinear Equations /
Systems Of First-Order Equations
Linear Systems
Homogeneous Linear Systems with Constant Coefficients
Nonhomogeneous Linear Systems
Mathematical Models
Phase Portraits and Stability
The laplace transform
The Laplace Transform
Translations Theorems
Derivative of a Transform, Transform of an Integral
Periodic Functions
Dirac Delta Function
Systems of Differential Equations
Series Solutions
Solutions About Ordinary Points
Solutions About Singular Points
Bessel's Equation
Appendix I
Appendix II
Appendix III
Answers To Selected Odd-Numbered Problems