Minimax Systems and Critical Point Theory

Minimax Systems and Critical Point Theory

EnglishHardbackPrint on demand
Schechter Martin
Birkhauser Boston Inc
EAN: 9780817648053
Print on demand
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Detailed information

Many problems in science and engineering involve the solution of differential equations or systems. One of most successful methods of solving nonlinear equations is the determination of critical points of corresponding functionals. The study of critical points has grown rapidly in recent years and has led to new applications in other scientific disciplines. This monograph continues this theme and studies new results discovered since the author's preceding book entitled Linking Methods in Critical Point Theory.

Written in a clear, sequential exposition, topics include semilinear problems, Fucik spectrum, multidimensional nonlinear wave equations, elliptic systems, and sandwich pairs, among others. With numerous examples and applications, this book explains the fundamental importance of minimax systems and describes how linking methods fit into the framework.

Minimax Systems and Critical Point Theory is accessible to graduate students with some background in functional analysis, and the new material makes this book a useful reference for researchers and mathematicians.

Review of the author's previous Birkhäuser work, Linking Methods in Critical Point Theory:

The applications of the abstract theory are to the existence of (nontrivial) weak solutions of semilinear elliptic boundary value problems for partial differential equations, written in the form Au = f(x, u). . . . The author essentially shows how his methods can be applied whenever the nonlinearity has sublinear growth, and the associated functional may increase at a certain rate in every direction of the underlying space. This provides an elementary approach to such problems. . . . A clear overview of the contents of the book is presented in the first chapter, while bibliographical comments and variant results are described in the last one. -MathSciNet

EAN 9780817648053
ISBN 0817648054
Binding Hardback
Publisher Birkhauser Boston Inc
Publication date June 10, 2009
Pages 242
Language English
Dimensions 235 x 155
Country United States
Readership Professional & Scholarly
Authors Schechter Martin
Illustrations XIV, 242 p.