Overview
- Illustrates several results with examples of current interest
- Will stimulate further research in oscillation theory
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Table of contents (10 chapters)
Keywords
About this book
In this monograph, the authors present a compact, thorough, systematic, and self-contained oscillation theory for linear, half-linear, superlinear, and sublinear second-order ordinary differential equations. An important feature of this monograph is the illustration of several results with examples of current interest. This book will stimulate further research into oscillation theory.
This book is written at a graduate level, and is intended for university libraries, graduate students, and researchers working in the field of ordinary differential equations.
Reviews
From the reviews:
"The monograph under review is a very successful attempt to collect and systematically present numerous oscillation or nonoscillation criteria for various classes of linear and nonlinear differential equations and related results on asymptotic behavior of solutions … . The book is nicely written and the selection of the material is very interesting … . The book is a welcome addition to the existing literature on oscillation and shall be useful for researchers and graduate students in differential equations … ." (Yuri V. Rogovchenko, Zentralblatt MATH, Vol. 1073 (24), 2005)
Authors and Affiliations
Bibliographic Information
Book Title: Oscillation Theory for Second Order Linear, Half-Linear, Superlinear and Sublinear Dynamic Equations
Authors: Ravi P. Agarwal, Said R. Grace, Donal O’Regan
DOI: https://doi.org/10.1007/978-94-017-2515-6
Publisher: Springer Dordrecht
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eBook Packages: Springer Book Archive
Copyright Information: Springer Science+Business Media Dordrecht 2002
Hardcover ISBN: 978-1-4020-0802-3Published: 31 July 2002
Softcover ISBN: 978-90-481-6095-2Published: 22 January 2011
eBook ISBN: 978-94-017-2515-6Published: 09 March 2013
Edition Number: 1
Number of Pages: XIV, 672
Topics: Ordinary Differential Equations, Real Functions, Functional Analysis