An Introduction to Minimax Theorems and Their Applications to Differential Equations

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Last edited by MARC Bot
September 28, 2024 | History

An Introduction to Minimax Theorems and Their Applications to Differential Equations

The book is intended to be an introduction to critical point theory and its applications to differential equations. Although the related material can be found in other books, the authors of this volume have had the following goals in mind: To present a survey of existing minimax theorems, To give applications to elliptic differential equations in bounded domains, To consider the dual variational method for problems with continuous and discontinuous nonlinearities, To present some elements of critical point theory for locally Lipschitz functionals and give applications to fourth-order differential equations with discontinuous nonlinearities, To study homoclinic solutions of differential equations via the variational methods. The contents of the book consist of seven chapters, each one divided into several sections. Audience: Graduate and post-graduate students as well as specialists in the fields of differential equations, variational methods and optimization.

Publish Date
Publisher
Springer, Springer US
Pages
286

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Edition Availability
Cover of: An Introduction to Minimax Theorems and Their Applications to Differential Equations
An Introduction to Minimax Theorems and Their Applications to Differential Equations
Dec 02, 2010, Springer, Springer US
paperback
Cover of: An Introduction to Minimax Theorems and Their Applications to Differential Equations (Nonconvex Optimization and Its Applications)
Cover of: An introduction to minimax theorems and their applications to differential equations
An introduction to minimax theorems and their applications to differential equations
2001, Kluwer Academic Publishers
in English

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Book Details


Edition Notes

Source title: An Introduction to Minimax Theorems and Their Applications to Differential Equations (Nonconvex Optimization and Its Applications (52))

Classifications

Library of Congress
QA1-939, QA370-380

The Physical Object

Format
paperback
Number of pages
286

Edition Identifiers

Open Library
OL28032594M
ISBN 10
144194849X
ISBN 13
9781441948496

Work Identifiers

Work ID
OL13590461W

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History

Download catalog record: RDF / JSON / OPDS | Wikipedia citation
September 28, 2024 Edited by MARC Bot import existing book
October 4, 2021 Edited by ImportBot import existing book
May 11, 2020 Created by ImportBot Imported from amazon.com record