
Partial Differential Equations
Lawrence C. Evans(Author)
American Mathematical Society (Publisher)
Published on 1. January 1998
Book
Hardback
712 pages
978-0-8218-0772-9 (ISBN)
Article exhausted; check for reprint
Description
This text gives a comprehensive survey of modern techniques in the theoretical study of partial differential equations (PDEs) with particular emphasis on nonlinear equations. The exposition is divided into three parts: representation formulas for solutions; theory for linear partial differential equations; and theory for nonlinear partial differential equations. Included are complete treatments of the method of characteristics; energy methods within Sobolev spaces; regularity for second-order elliptic, parabolic, and hyperbolic equations; maximum principles; the multidimensional calculus of variations; viscosity solutions of Hamilton-Jacobi equations; shock waves and entropy criteria for conservation laws; and, much more.The author summarizes the relevant mathematics required to understand current research in PDEs, especially nonlinear PDEs. While he has reworked and simplified much of the classical theory (particularly the method of characteristics), he primarily emphasizes the modern interplay between functional analytic insights and calculus-type estimates within the context of Sobolev spaces. Treatment of all topics is complete and self-contained.
The book's wide scope and clear exposition make it a suitable text for a graduate course in PDEs.
The book's wide scope and clear exposition make it a suitable text for a graduate course in PDEs.
More details
Series
Language
English
Place of publication
Providence
United States
Target group
Professional and scholarly
Illustrations
bibliography, index
Dimensions
Height: 267 mm
Width: 190 mm
Weight
1405 gr
ISBN-13
978-0-8218-0772-9 (9780821807729)
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New editions

Lawrence C. Evans
Partial Differential Equations
Book
04/2010
2nd Edition
American Mathematical Society
€130.73
Article exhausted; check different version
Person
(University of California, Berkeley, USA)
Content
Introduction Part I: Representation formulas for solutions: Four important linear partial differential equations Nonlinear first-order PDE Other ways to represent solutions Part II: Theory for linear partial differential equations: Sobolev spaces Second-order elliptic equations Linear evolution equations Part III: Theory for nonlinear partial differential equations: The calculus of variations Nonvariational techniques Hamilton-Jacobi equations Systems of conservation laws Appendices Bibliography Index.