Topological Methods In The Theory Of Nonlinear Integral Equations
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Topological Methods in the Theory of Nonlinear Integral Equations
![Topological Methods in the Theory of Nonlinear Integral Equations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Mark Krasnosel-Skii |
Publsiher | : Unknown |
Total Pages | : 395 |
Release | : 1964 |
Genre | : Electronic Book |
ISBN | : LCCN:63010052 |
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Topological Methods in the Theory of Nonlinear Integral Equations
![Topological Methods in the Theory of Nonlinear Integral Equations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : Mark Aleksandrovich Krasnoselʹskiĭ |
Publsiher | : Unknown |
Total Pages | : 395 |
Release | : 1964 |
Genre | : Integral equations |
ISBN | : 0080135536 |
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Topological Methods Theory of Nonlinear Integral Equations
![Topological Methods Theory of Nonlinear Integral Equations](https://youbookinc.com/wp-content/uploads/2024/06/cover.jpg)
Author | : M. Krasnosel,A. Armstrong |
Publsiher | : Pergamon |
Total Pages | : 135 |
Release | : 1964 |
Genre | : Electronic Book |
ISBN | : 0080101143 |
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Handbook of Topological Fixed Point Theory
Author | : Robert F. Brown |
Publsiher | : Springer Science & Business Media |
Total Pages | : 990 |
Release | : 2005-07-21 |
Genre | : Mathematics |
ISBN | : 1402032218 |
Download Handbook of Topological Fixed Point Theory Book in PDF, Epub and Kindle
This book will be especially useful for post-graduate students and researchers interested in the fixed point theory, particularly in topological methods in nonlinear analysis, differential equations and dynamical systems. The content is also likely to stimulate the interest of mathematical economists, population dynamics experts as well as theoretical physicists exploring the topological dynamics.
Fixed points and topological degree in nonlinear analysis
Author | : Jane Cronin |
Publsiher | : American Mathematical Soc. |
Total Pages | : 212 |
Release | : 1995-01-05 |
Genre | : Fixed point theory |
ISBN | : 9780821815113 |
Download Fixed points and topological degree in nonlinear analysis Book in PDF, Epub and Kindle
The topological methods based on fixed-point theory and on local topological degree which have been developed by Leray, Schauder, Nirenberg, Cesari and others for the study of nonlinear differential equations are here described in detail, beginning with elementary considerations. The reader is not assumed to have any knowledge of topology beyond the theory of point sets in Euclidean n-space which ordinarily forms part of a course in advanced calculus. The methods are first developed for Euclidean n-space and applied to the study of existence and stability of periodic and almost-periodic solutions of systems of ordinary differential equations, both quasi-linear and with ``large'' nonlinearities. Then, after being extended to infinite-dimensional ``function-spaces'', these methods are applied to integral equations, partial differential equations and further problems concerning periodic solutions of ordinary differential equations.
Order Structure and Topological Methods in Nonlinear Partial Differential Equations
Author | : Yihong Du |
Publsiher | : World Scientific |
Total Pages | : 202 |
Release | : 2006 |
Genre | : Mathematics |
ISBN | : 9789812774446 |
Download Order Structure and Topological Methods in Nonlinear Partial Differential Equations Book in PDF, Epub and Kindle
The maximum principle induces an order structure for partial differential equations, and has become an important tool in nonlinear analysis. This book is the first of two volumes to systematically introduce the applications of order structure in certain nonlinear partial differential equation problems. The maximum principle is revisited through the use of the Krein-Rutman theorem and the principal eigenvalues. Its various versions, such as the moving plane and sliding plane methods, are applied to a variety of important problems of current interest. The upper and lower solution method, especially its weak version, is presented in its most up-to-date form with enough generality to cater for wide applications. Recent progress on the boundary blow-up problems and their applications are discussed, as well as some new symmetry and Liouville type results over half and entire spaces. Some of the results included here are published for the first time. Sample Chapter(s). Chapter 1: Krein-Rutman Theorem and the Principal Eigenvalue (128 KB). Contents: KreinOCoRutman Theorem and the Principal Eigenvalue; Maximum Principles Revisited; The Moving Plane Method; The Method of Upper and Lower Solutions; The Logistic Equation; Boundary Blow-Up Problems; Symmetry and Liouville Type Results Over Half and Entire Spaces. Readership: Researchers and postgraduate students in partial differential equations."
Existence Theory for Nonlinear Integral and Integrodifferential Equations
Author | : Donal O'Regan,Maria Meehan |
Publsiher | : Springer Science & Business Media |
Total Pages | : 230 |
Release | : 2012-12-06 |
Genre | : Mathematics |
ISBN | : 9789401149921 |
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The theory of integral and integrodifferential equations has ad vanced rapidly over the last twenty years. Of course the question of existence is an age-old problem of major importance. This mono graph is a collection of some of the most advanced results to date in this field. The book is organized as follows. It is divided into twelve chap ters. Each chapter surveys a major area of research. Specifically, some of the areas considered are Fredholm and Volterra integral and integrodifferential equations, resonant and nonresonant problems, in tegral inclusions, stochastic equations and periodic problems. We note that the selected topics reflect the particular interests of the authors. Donal 0 'Regan Maria Meehan CHAPTER 1 INTRODUCTION AND PRELIMINARIES 1.1. Introduction The aim of this book is firstly to provide a comprehensive existence the ory for integral and integrodifferential equations, and secondly to present some specialised topics in integral equations which we hope will inspire fur ther research in the area. To this end, the first part of the book deals with existence principles and results for nonlinear, Fredholm and Volterra inte gral and integrodifferential equations on compact and half-open intervals, while selected topics (which reflect the particular interests of the authors) such as nonresonance and resonance problems, equations in Banach spaces, inclusions, and stochastic equations are presented in the latter part.
Topological Nonlinear Analysis II
Author | : Michele Matzeu,Alfonso Vignoli |
Publsiher | : Springer Science & Business Media |
Total Pages | : 609 |
Release | : 2012-12-06 |
Genre | : Mathematics |
ISBN | : 9781461241263 |
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The main purpose of the present volume is to give a survey of some of the most significant achievements obtained by topological methods in nonlin ear analysis during the last three decades. It is intended, at least partly, as a continuation of Topological Nonlinear Analysis: Degree, Singularity and Varia tions, published in 1995. The survey articles presented are concerned with three main streams of research, that is topological degree, singularity theory and variational methods, They reflect the personal taste of the authors, all of them well known and distinguished specialists. A common feature of these articles is to start with a historical introduction and conclude with recent results, giving a dynamic picture of the state of the art on these topics. Let us mention the fact that most of the materials in this book were pre sented by the authors at the "Second Topological Analysis Workshop on Degree, Singularity and Variations: Developments of the Last 25 Years," held in June 1995 at Villa Tuscolana, Frascati, near Rome. Michele Matzeu Alfonso Vignoli Editors Topological Nonlinear Analysis II Degree, Singularity and Variations Classical Solutions for a Perturbed N-Body System Gianfausto Dell 'A ntonio O. Introduction In this review I shall consider the perturbed N-body system, i.e., a system composed of N point bodies of masses ml, ... mN, described in cartesian co ordinates by the system of equations (0.1) where f) V'k,m == -£l--' m = 1, 2, 3.