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Nonlinear Second Order Elliptic Equations

Autor Mingxin Wang, Peter Y. H. Pang
en Limba Engleză Hardback – 27 apr 2024
This book focuses on the following three topics in the theory of boundary value problems of nonlinear second order elliptic partial differential equations and systems: (i) eigenvalue problem, (ii) upper and lower solutions method, (iii) topological degree method, and deals with the existence of solutions, more specifically non-constant positive solutions, as well as the uniqueness, stability and asymptotic behavior of such solutions.
While not all-encompassing, these topics represent major approaches to the theory of partial differential equations and systems, and should be of significant interest to graduate students and researchers. Two appendices have been included to provide a good gauge of the prerequisites for this book and make it reasonably self-contained.
A notable strength of the book is that it contains a large number of substantial examples. Exercises for the reader are also included. Therefore, this book is suitable as a textbook for graduate students who havealready had an introductory course on PDE and some familiarity with functional analysis and nonlinear functional analysis, and as a reference for researchers.
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Specificații

ISBN-13: 9789819986910
ISBN-10: 9819986915
Pagini: 314
Ilustrații: XII, 314 p. 29 illus.
Dimensiuni: 155 x 235 mm
Greutate: 0.64 kg
Ediția:2024
Editura: Springer Nature Singapore
Colecția Springer
Locul publicării:Singapore, Singapore

Cuprins

Preface.- Preliminaries.- Eigenvalue problems of second order linear elliptic operators.- Upper and lower solutions method for single equations.- Upper and lower solutions method for systems.- Theory of topological degree in cones and applications.- Systems with homogeneous Neumann boundary conditions.- P-Laplace equations and systems.- Appendix A: Basic results of Sobolev spaces and nonlinear functional analysis.- Appendix B: Basic theory of elliptic equations.- References.- Index.


Notă biografică

Mingxin Wang received his PhD from the Beijing Institute of Technology. He is a prolific educator and researcher in the theory of partial differential equations. In the last two decades, he has made significant contributions to the study of diffusive systems arising in mathematical biology, especially population dynamics.
Peter Y. H. Pang received his PhD from the University of Illinois at Urbana-Champaign. His research interests include partial differential equations and geometric analysis. In the past two decades, he has focused on parabolic and elliptic equations with applications in mathematical biology.
The two authors have collaborated over a period of more than 15 years, and have co-authored 17 research papers. This book draws upon some key findings and examples resulting from this fruitful collaboration.

Textul de pe ultima copertă

This book focuses on the following three topics in the theory of boundary value problems of nonlinear second order elliptic partial differential equations and systems: (i) eigenvalue problem, (ii) upper and lower solutions method, (iii) topological degree method, and deals with the existence of solutions, more specifically non-constant positive solutions, as well as the uniqueness, stability and asymptotic behavior of such solutions.
 
While not all-encompassing, these topics represent major approaches to the theory of partial differential equations and systems, and should be of significant interest to graduate students and researchers. Two appendices have been included to provide a good gauge of the prerequisites for this book and make it reasonably self-contained.
 
A notable strength of the book is that it contains a large number of substantial examples. Exercises for the reader are also included. Therefore, this book is suitable as a textbook for graduate students who have already had an introductory course on PDE and some familiarity with functional analysis and nonlinear functional analysis, and as a reference for researchers.

Caracteristici

Presents major approaches to the theory of boundary value problems of nonlinear second order elliptic PDEs and systems Draws examples from important research papers and gives graduate students a good start in research Contains concrete examples with application background to illustrate theoretical concepts and approaches