Nonoscillation and Oscillation Theory for Functional Differential Equations / Edition 1

Nonoscillation and Oscillation Theory for Functional Differential Equations / Edition 1

ISBN-10:
0824758455
ISBN-13:
9780824758455
Pub. Date:
08/30/2004
Publisher:
Taylor & Francis
ISBN-10:
0824758455
ISBN-13:
9780824758455
Pub. Date:
08/30/2004
Publisher:
Taylor & Francis
Nonoscillation and Oscillation Theory for Functional Differential Equations / Edition 1

Nonoscillation and Oscillation Theory for Functional Differential Equations / Edition 1

$400.0
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Overview

This book summarizes the qualitative theory of differential equations with or without delays, collecting recent oscillation studies important to applications and further developments in mathematics, physics, engineering, and biology. The authors address oscillatory and nonoscillatory properties of first-order delay and neutral delay differential equations, second-order delay and ordinary differential equations, higher-order delay differential equations, and systems of nonlinear differential equations. The final chapter explores key aspects of the oscillation of dynamic equations on time scales-a new and innovative theory that accomodates differential and difference equations simultaneously.

Product Details

ISBN-13: 9780824758455
Publisher: Taylor & Francis
Publication date: 08/30/2004
Series: Pure and Applied Mathematics Series
Edition description: New Edition
Pages: 400
Product dimensions: 6.31(w) x 9.12(h) x (d)

About the Author

Agarwal, Ravi P.; Bohner, Martin; Li, Wan-Tong

Table of Contents

This book summarizes the qualitative theory of differential equations with or without delays, collecting recent oscillation studies important to applications and further developments in mathematics, physics, engineering, and biology. The authors address oscillatory and nonoscillatory properties of first-order delay and neutral delay differential equations, second-order delay and ordinary differential equations, higher-order delay differential equations, and systems of nonlinear differential equations. The final chapter explores key aspects of the oscillation of dynamic equations on time scales-a new and innovative theory that accomodates differential and difference equations simultaneously.
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