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Nonsmooth Critical Point Theory and Nonlinear Boundary Value Problems (Paperback): Leszek Gasinski, Nikolaos S. Papageorgiou Nonsmooth Critical Point Theory and Nonlinear Boundary Value Problems (Paperback)
Leszek Gasinski, Nikolaos S. Papageorgiou
R2,030 Discovery Miles 20 300 Ships in 12 - 17 working days

Starting in the early 1980s, people using the tools of nonsmooth analysis developed some remarkable nonsmooth extensions of the existing critical point theory. Until now, however, no one had gathered these tools and results together into a unified, systematic survey of these advances. This book fills that gap. It provides a complete presentation of nonsmooth critical point theory, then goes beyond it to study nonlinear second order boundary value problems. The authors do not limit their treatment to problems in variational form. They also examine in detail equations driven by the p-Laplacian, its generalizations, and their spectral properties, studying a wide variety of problems and illustrating the powerful tools of modern nonlinear analysis. The presentation includes many recent results, including some that were previously unpublished. Detailed appendices outline the fundamental mathematical tools used in the book, and a rich bibliography forms a guide to the relevant literature. Most books addressing critical point theory deal only with smooth problems, linear or semilinear problems, or consider only variational methods or the tools of nonlinear operators. Nonsmooth Critical Point Theory and Nonlinear Boundary Value Problems offers a comprehensive treatment of the subject that is up-to-date, self-contained, and rich in methods for a wide variety of problems.

Nonlinear Analysis (Hardcover): Leszek Gasinski, Nikolaos S. Papageorgiou Nonlinear Analysis (Hardcover)
Leszek Gasinski, Nikolaos S. Papageorgiou
R5,712 Discovery Miles 57 120 Ships in 12 - 17 working days

Nonlinear analysis is a broad, interdisciplinary field characterized by a remarkable mixture of analysis, topology, and applications. Its concepts and techniques provide the tools for developing more realistic and accurate models for a variety of phenomena encountered in fields ranging from engineering and chemistry to economics and biology.

This volume focuses on topics in nonlinear analysis pertinent to the theory of boundary value problems and their application in areas such as control theory and the calculus of variations. It complements the many other books on nonlinear analysis by addressing topics previously discussed fully only in scattered research papers. These include recent results on critical point theory, nonlinear differential operators, and related regularity and comparison principles.

The rich variety of topics, both theoretical and applied, make Nonlinear Analysis useful to anyone, whether graduate student or researcher, working in analysis or its applications in optimal control, theoretical mechanics, or dynamical systems. An appendix contains all of the background material needed, and a detailed bibliography forms a guide for further study.

Applied Nonlinear Functional Analysis - An Introduction (Paperback): Nikolaos S. Papageorgiou, Patrick Winkert Applied Nonlinear Functional Analysis - An Introduction (Paperback)
Nikolaos S. Papageorgiou, Patrick Winkert
R3,030 R2,311 Discovery Miles 23 110 Save R719 (24%) Ships in 10 - 15 working days

The aim of this book is to provide a concise but complete introduction to the main mathematical tools of nonlinear functional analysis, which are also used in the study of concrete problems in economics, engineering, and physics. This volume gathers the mathematical background needed in order to conduct research or to deal with theoretical problems and applications using the tools of nonlinear functional analysis. Contents Basic Topology Measure Theory Basic Functional Analysis Banach Spaces of Functions and Measures Convex Functions - Nonsmooth Analysis Nonlinear Analysis

Exercises in Analysis - Part 2: Nonlinear Analysis (Paperback, Softcover reprint of the original 1st ed. 2016): Leszek... Exercises in Analysis - Part 2: Nonlinear Analysis (Paperback, Softcover reprint of the original 1st ed. 2016)
Leszek Gasinski, Nikolaos S. Papageorgiou
R3,413 Discovery Miles 34 130 Ships in 10 - 15 working days

This second of two Exercises in Analysis volumes covers problems in five core topics of mathematical analysis: Function Spaces, Nonlinear and Multivalued Maps, Smooth and Nonsmooth Calculus, Degree Theory and Fixed Point Theory, and Variational and Topological Methods. Each of five topics corresponds to a different chapter with inclusion of the basic theory and accompanying main definitions and results,followed by suitable comments and remarks for better understanding of the material. Exercises/problems are presented for each topic, with solutions available at the end of each chapter. The entire collection of exercises offers a balanced and useful picture for the application surrounding each topic. This nearly encyclopedic coverage of exercises in mathematical analysis is the first of its kind and is accessible to a wide readership. Graduate students will find the collection of problems valuable in preparation for their preliminary or qualifying exams as well as for testing their deeper understanding of the material. Exercises are denoted by degree of difficulty. Instructors teaching courses that include one or all of the above-mentioned topics will find the exercises of great help in course preparation. Researchers in analysis may find this Work useful as a summary of analytic theories published in one accessible volume.

Exercises in Analysis - Part 1 (Paperback, Softcover reprint of the original 1st ed. 2014): Leszek Gasinksi, Nikolaos S.... Exercises in Analysis - Part 1 (Paperback, Softcover reprint of the original 1st ed. 2014)
Leszek Gasinksi, Nikolaos S. Papageorgiou
R3,190 Discovery Miles 31 900 Ships in 10 - 15 working days

Exercises in Analysis will be published in two volumes. This first volume covers problems in five core topics of mathematical analysis: metric spaces; topological spaces; measure, integration and Martingales; measure and topology and functional analysis. Each of five topics correspond to a different chapter with inclusion of the basic theory and accompanying main definitions and results, followed by suitable comments and remarks for better understanding of the material. At least 170 exercises/problems are presented for each topic, with solutions available at the end of each chapter. The entire collection of exercises offers a balanced and useful picture for the application surrounding each topic. This nearly encyclopedic coverage of exercises in mathematical analysis is the first of its kind and is accessible to a wide readership. Graduate students will find the collection of problems valuable in preparation for their preliminary or qualifying exams as well as for testing their deeper understanding of the material. Exercises are denoted by degree of difficulty. Instructors teaching courses that include one or all of the above-mentioned topics will find the exercises of great help in course preparation. Researchers in analysis may find this Work useful as a summary of analytic theories published in one accessible volume.

Handbook of Multivalued Analysis - Volume II: Applications (Paperback, 2000 ed.): Shouchuan Hu, Nikolaos S. Papageorgiou Handbook of Multivalued Analysis - Volume II: Applications (Paperback, 2000 ed.)
Shouchuan Hu, Nikolaos S. Papageorgiou
R4,691 Discovery Miles 46 910 Ships in 10 - 15 working days

In volume I we developed the tools of "Multivalued Analysis. " In this volume we examine the applications. After all, the initial impetus for the development of the theory of set-valued functions came from its applications in areas such as control theory and mathematical economics. In fact, the needs of control theory, in particular the study of systems with a priori feedback, led to the systematic investigation of differential equations with a multi valued vector field (differential inclusions). For this reason, we start this volume with three chapters devoted to set-valued differential equations. However, in contrast to the existing books on the subject (i. e. J. -P. Aubin - A. Cellina: "Differential Inclusions," Springer-Verlag, 1983, and Deimling: "Multivalued Differential Equations," W. De Gruyter, 1992), here we focus on "Evolution Inclusions," which are evolution equations with multi valued terms. Evolution equations were raised to prominence with the development of the linear semigroup theory by Hille and Yosida initially, with subsequent im portant contributions by Kato, Phillips and Lions. This theory allowed a successful unified treatment of some apparently different classes of nonstationary linear par tial differential equations and linear functional equations. The needs of dealing with applied problems and the natural tendency to extend the linear theory to the nonlinear case led to the development of the nonlinear semigroup theory, which became a very effective tool in the analysis of broad classes of nonlinear evolution equations.

An Introduction to Nonlinear Analysis: Applications (Paperback, Softcover reprint of the original 1st ed. 2003): Zdzislaw... An Introduction to Nonlinear Analysis: Applications (Paperback, Softcover reprint of the original 1st ed. 2003)
Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S. Papageorgiou
R5,994 Discovery Miles 59 940 Ships in 10 - 15 working days

This book offers an exposition of the main applications of Nonlinear Analysis, beginning with a chapter on Nonlinear Operators and Fixed Points, a connecting point and bridge from Nonlinear Analysis theory to its applications. The topics covered include applications to ordinary and partial differential equations, optimization, optimal control, calculus of variations and mathematical economics. The presentation is supplemented with the inclusion of many exercises and their solutions.

An Introduction to Nonlinear Analysis: Theory (Paperback, Softcover reprint of the original 1st ed. 2003): Zdzislaw Denkowski,... An Introduction to Nonlinear Analysis: Theory (Paperback, Softcover reprint of the original 1st ed. 2003)
Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S. Papageorgiou
R5,943 Discovery Miles 59 430 Ships in 10 - 15 working days

An Introduction to Nonlinear Analysis: Theory is an overview of some basic, important aspects of Nonlinear Analysis, with an emphasis on those not included in the classical treatment of the field. Today Nonlinear Analysis is a very prolific part of modern mathematical analysis, with fascinating theory and many different applications ranging from mathematical physics and engineering to social sciences and economics. Topics covered in this book include the necessary background material from topology, measure theory and functional analysis (Banach space theory). The text also deals with multivalued analysis and basic features of nonsmooth analysis, providing a solid background for the more applications-oriented material of the book An Introduction to Nonlinear Analysis: Applications by the same authors.

The book is self-contained and accessible to the newcomer, complete with numerous examples, exercises and solutions. It is a valuable tool, not only for specialists in the field interested in technical details, but also for scientists entering Nonlinear Analysis in search of promising directions for research.

Handbook of Multivalued Analysis - Volume I: Theory (Paperback, Softcover reprint of the original 1st ed. 1997): Shouchuan Hu,... Handbook of Multivalued Analysis - Volume I: Theory (Paperback, Softcover reprint of the original 1st ed. 1997)
Shouchuan Hu, Nikolaos S. Papageorgiou
R7,504 Discovery Miles 75 040 Ships in 10 - 15 working days

the many different applications that this theory provides. We mention that the existing literature on this subject includes the books of J. P. Aubin, J. P. Aubin-A. Cellina, J. P. Aubin-H. Frankowska, C. Castaing-M. Valadier, K. Deimling, M. Kisielewicz and E. Klein-A. Thompson. However, these books either deal with one particular domain of the subject or present primarily the finite dimensional aspects of the theory. In this volume, we have tried very hard to give a much more complete picture of the subject, to include some important new developments that occurred in recent years and a detailed bibliography. Although the presentation of the subject requires some knowledge in various areas of mathematical analysis, we have deliberately made this book more or less self-contained, with the help of an extended appendix in which we have gathered several basic notions and results from topology, measure theory and nonlinear functional analysis. In this volume we present the theory of the subject, while in the second volume we will discuss mainly applications. This volume is divided into eight chapters. The flow of chapters follows more or less the historical development of the subject. We start with the topological theory, followed by the measurability study of multifunctions. Chapter 3 deals with the theory of monotone and accretive operators. The closely related topics of the degree theory and fixed points of multifunctions are presented in Chapters 4 and 5, respectively.

Handbook of Applied Analysis (Paperback, 2009): Nikolaos S. Papageorgiou, Sophia Th. Kyritsi-Yiallourou Handbook of Applied Analysis (Paperback, 2009)
Nikolaos S. Papageorgiou, Sophia Th. Kyritsi-Yiallourou
R4,644 Discovery Miles 46 440 Ships in 10 - 15 working days

This handbook provides an in-depth examination of important theoretical methods and procedures in applied analysis. It details many of the most important theoretical trends in nonlinear analysis and applications to different fields. These features make the volume a valuable tool for every researcher working on nonlinear analysis.

Handbook of Applied Analysis (Hardcover, 2009 ed.): Nikolaos S. Papageorgiou, Sophia Th. Kyritsi-Yiallourou Handbook of Applied Analysis (Hardcover, 2009 ed.)
Nikolaos S. Papageorgiou, Sophia Th. Kyritsi-Yiallourou
R5,000 Discovery Miles 50 000 Ships in 10 - 15 working days

Accurate models to describe real-world phenomena are indispensable for research in such scientific fields as physics, engineering, biology, chemistry, and economics. The tools and techniques of applied analysis facilitate the development of mathematical models and can thereby serve as an excellent resource for students and researchers in various scientific and mathematical disciplines.

This self-contained, comprehensive handbook provides an in-depth examination of important theoretical methods and procedures in applied analysis.

Unique features of the Handbook of Applied Analysis

Presents an accessible introduction to modern analysis, while still serving as a useful reference for researchers and practitioners;

Covers a large number of diverse topics: smooth and nonsmooth differential calculus, optimal control, fixed point theory, critical point theory, linear and nonlinear eigenvalue problems, nonlinear boundary value problems, set-valued analysis, game theory, stochastic analysis, and evolutionary equations;

Serves as a complete guide to the theory of nonlinear analysis;

Includes numerous examples that demonstrate and expand upon the topics presented;

Suggests many directions for further research and study.

In this one volume, the reader can find many of the most important theoretical trends in nonlinear analysis and applications to different fields. These features, together with an extensive bibliography, make the volume a valuable tool for every researcher working on nonlinear analysis."

An Introduction to Nonlinear Analysis: Applications (Hardcover, 2003 ed.): Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S.... An Introduction to Nonlinear Analysis: Applications (Hardcover, 2003 ed.)
Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S. Papageorgiou
R5,994 Discovery Miles 59 940 Ships in 10 - 15 working days

An Introduction to Nonlinear Analysis: Applications offers an exposition of the main applications of Nonlinear Analysis. Its starting point is a chapter on Nonlinear Operators and Fixed Points, a connecting point and bridge from Nonlinear Analysis theory to its applications. The topics covered include applications to ordinary and partial differential equations, optimization, optimal control, calculus of variations and mathematical economics.

This book is an excellent springboard for anyone wishing to conduct advanced research or work on a postgraduate text. Many exercises and their solutions complement the presentation.

The text is a companion to An Introduction to Nonlinear Analysis: Theory by the same authors.

An Introduction to Nonlinear Analysis: Theory (Hardcover, 2003 ed.): Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S.... An Introduction to Nonlinear Analysis: Theory (Hardcover, 2003 ed.)
Zdzislaw Denkowski, Stanislaw Migorski, Nikolaos S. Papageorgiou
R5,968 Discovery Miles 59 680 Ships in 10 - 15 working days

An Introduction to Nonlinear Analysis: Theory is an overview of some basic, important aspects of Nonlinear Analysis, with an emphasis on those not included in the classical treatment of the field. Today Nonlinear Analysis is a very prolific part of modern mathematical analysis, with fascinating theory and many different applications ranging from mathematical physics and engineering to social sciences and economics. Topics covered in this book include the necessary background material from topology, measure theory and functional analysis (Banach space theory). The text also deals with multivalued analysis and basic features of nonsmooth analysis, providing a solid background for the more applications-oriented material of the book An Introduction to Nonlinear Analysis: Applications by the same authors.

The book is self-contained and accessible to the newcomer, complete with numerous examples, exercises and solutions. It is a valuable tool, not only for specialists in the field interested in technical details, but also for scientists entering Nonlinear Analysis in search of promising directions for research.

Handbook of Multivalued Analysis - Volume II: Applications (Hardcover, 2000 ed.): Shouchuan Hu, Nikolaos S. Papageorgiou Handbook of Multivalued Analysis - Volume II: Applications (Hardcover, 2000 ed.)
Shouchuan Hu, Nikolaos S. Papageorgiou
R4,724 Discovery Miles 47 240 Ships in 10 - 15 working days

In volume I we developed the tools of "Multivalued Analysis. " In this volume we examine the applications. After all, the initial impetus for the development of the theory of set-valued functions came from its applications in areas such as control theory and mathematical economics. In fact, the needs of control theory, in particular the study of systems with a priori feedback, led to the systematic investigation of differential equations with a multi valued vector field (differential inclusions). For this reason, we start this volume with three chapters devoted to set-valued differential equations. However, in contrast to the existing books on the subject (i. e. J. -P. Aubin - A. Cellina: "Differential Inclusions," Springer-Verlag, 1983, and Deimling: "Multivalued Differential Equations," W. De Gruyter, 1992), here we focus on "Evolution Inclusions," which are evolution equations with multi valued terms. Evolution equations were raised to prominence with the development of the linear semigroup theory by Hille and Yosida initially, with subsequent im portant contributions by Kato, Phillips and Lions. This theory allowed a successful unified treatment of some apparently different classes of nonstationary linear par tial differential equations and linear functional equations. The needs of dealing with applied problems and the natural tendency to extend the linear theory to the nonlinear case led to the development of the nonlinear semigroup theory, which became a very effective tool in the analysis of broad classes of nonlinear evolution equations."

Handbook of Multivalued Analysis - Volume I: Theory (Hardcover, 1997 ed.): Shouchuan Hu, Nikolaos S. Papageorgiou Handbook of Multivalued Analysis - Volume I: Theory (Hardcover, 1997 ed.)
Shouchuan Hu, Nikolaos S. Papageorgiou
R6,782 Discovery Miles 67 820 Ships in 10 - 15 working days

the many different applications that this theory provides. We mention that the existing literature on this subject includes the books of J. P. Aubin, J. P. Aubin-A. Cellina, J. P. Aubin-H. Frankowska, C. Castaing-M. Valadier, K. Deimling, M. Kisielewicz and E. Klein-A. Thompson. However, these books either deal with one particular domain of the subject or present primarily the finite dimensional aspects of the theory. In this volume, we have tried very hard to give a much more complete picture of the subject, to include some important new developments that occurred in recent years and a detailed bibliography. Although the presentation of the subject requires some knowledge in various areas of mathematical analysis, we have deliberately made this book more or less self-contained, with the help of an extended appendix in which we have gathered several basic notions and results from topology, measure theory and nonlinear functional analysis. In this volume we present the theory of the subject, while in the second volume we will discuss mainly applications. This volume is divided into eight chapters. The flow of chapters follows more or less the historical development of the subject. We start with the topological theory, followed by the measurability study of multifunctions. Chapter 3 deals with the theory of monotone and accretive operators. The closely related topics of the degree theory and fixed points of multifunctions are presented in Chapters 4 and 5, respectively.

Exercises in Analysis - Part 1 (Hardcover, 2014 ed.): Leszek Gasinksi, Nikolaos S. Papageorgiou Exercises in Analysis - Part 1 (Hardcover, 2014 ed.)
Leszek Gasinksi, Nikolaos S. Papageorgiou
R3,519 Discovery Miles 35 190 Ships in 12 - 17 working days

Exercises in Analysis will be published in two volumes. This first volume covers problems in five core topics of mathematical analysis: metric spaces; topological spaces; measure, integration and Martingales; measure and topology and functional analysis. Each of five topics correspond to a different chapter with inclusion of the basic theory and accompanying main definitions and results, followed by suitable comments and remarks for better understanding of the material. At least 170 exercises/problems are presented for each topic, with solutions available at the end of each chapter. The entire collection of exercises offers a balanced and useful picture for the application surrounding each topic.

This nearly encyclopedic coverage of exercises in mathematical analysis is the first of its kind and is accessible to a wide readership. Graduate students will find the collection of problems valuable in preparation for their preliminary or qualifying exams as well as for testing their deeper understanding of the material. Exercises are denoted by degree of difficulty. Instructors teaching courses that include one or all of the above-mentioned topics will find the exercises of great help in course preparation. Researchers in analysis may find this Work useful as a summary of analytic theories published in one accessible volume.

Research Topics in Analysis, Volume I - Grounding Theory (Hardcover, 1st ed. 2022): Shouchuan Hu, Nikolaos S. Papageorgiou Research Topics in Analysis, Volume I - Grounding Theory (Hardcover, 1st ed. 2022)
Shouchuan Hu, Nikolaos S. Papageorgiou
R2,561 Discovery Miles 25 610 Ships in 10 - 15 working days

This book, which is the first of two volumes, presents, in a unique way, some of the most relevant research tools of modern analysis. This work empowers young researchers with all the necessary techniques to explore the various subfields of this broad subject, and introduces relevant frameworks where these tools can be immediately deployed. Volume I starts with the foundations of modern analysis. The first three chapters are devoted to topology, measure theory, and functional analysis. Chapter 4 offers a comprehensive analysis of the main function spaces, while Chapter 5 covers more concrete subjects, like multivariate analysis, which are closely related to applications and more difficult to find in compact form. Chapter 6 deals with smooth and non-smooth calculus of functions; Chapter 7 introduces certain important classes of nonlinear operators; and Chapter 8 complements the previous three chapters with topics of variational analysis. Each chapter of this volume finishes with a list of problems - handy for understanding and self-study - and historical notes that give the reader a more vivid picture of how the theory developed. Volume II consists of various applications using the tools and techniques developed in this volume. By offering a clear and wide picture of the tools and applications of modern analysis, this work can be of great benefit not only to mature graduate students seeking topics for research, but also to experienced researchers with an interest in this vast and rich field of mathematics.

Exercises in Analysis - Part 2: Nonlinear Analysis (Hardcover, 1st ed. 2016): Leszek Gasinski, Nikolaos S. Papageorgiou Exercises in Analysis - Part 2: Nonlinear Analysis (Hardcover, 1st ed. 2016)
Leszek Gasinski, Nikolaos S. Papageorgiou
R3,553 Discovery Miles 35 530 Ships in 10 - 15 working days

This second of two Exercises in Analysis volumes covers problems in five core topics of mathematical analysis: Function Spaces, Nonlinear and Multivalued Maps, Smooth and Nonsmooth Calculus, Degree Theory and Fixed Point Theory, and Variational and Topological Methods. Each of five topics corresponds to a different chapter with inclusion of the basic theory and accompanying main definitions and results,followed by suitable comments and remarks for better understanding of the material. Exercises/problems are presented for each topic, with solutions available at the end of each chapter. The entire collection of exercises offers a balanced and useful picture for the application surrounding each topic. This nearly encyclopedic coverage of exercises in mathematical analysis is the first of its kind and is accessible to a wide readership. Graduate students will find the collection of problems valuable in preparation for their preliminary or qualifying exams as well as for testing their deeper understanding of the material. Exercises are denoted by degree of difficulty. Instructors teaching courses that include one or all of the above-mentioned topics will find the exercises of great help in course preparation. Researchers in analysis may find this Work useful as a summary of analytic theories published in one accessible volume.

Nonlinear Analysis - Theory and Methods (Hardcover, 1st ed. 2019): Nikolaos S. Papageorgiou, Vicentiu D. Radulescu, Dusan D.... Nonlinear Analysis - Theory and Methods (Hardcover, 1st ed. 2019)
Nikolaos S. Papageorgiou, Vicentiu D. Radulescu, Dusan D. Repovs
R3,037 R1,802 Discovery Miles 18 020 Save R1,235 (41%) Ships in 12 - 17 working days

This book emphasizes those basic abstract methods and theories that are useful in the study of nonlinear boundary value problems. The content is developed over six chapters, providing a thorough introduction to the techniques used in the variational and topological analysis of nonlinear boundary value problems described by stationary differential operators. The authors give a systematic treatment of the basic mathematical theory and constructive methods for these classes of nonlinear equations as well as their applications to various processes arising in the applied sciences. They show how these diverse topics are connected to other important parts of mathematics, including topology, functional analysis, mathematical physics, and potential theory. Throughout the book a nice balance is maintained between rigorous mathematics and physical applications. The primary readership includes graduate students and researchers in pure and applied nonlinear analysis.

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