Exercises in Analysis: Part 2: Nonlinear Analysis

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​Contains exercises ranging from easy to difficult, with level of difficulty designated Features an encyclopedic volume of exercises in five core topics of mathematical analysis Prepares students well for qualifying exams and tests their depth of understanding of the material 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. Topics Functional Analysis Measure and Integration Probability Theory and Stochastic Processes Topology

Author(s): Leszek Gasinski, Nikolaos S. Papageorgiou
Series: Problem Books in Mathematics
Edition: 1
Publisher: Springer
Year: 2016

Language: English
Pages: C, VIII,1264
Tags: Functional Analysis; Measure and Integration; Probability Theory and Stochastic Processes; Topology

Front Matter....Pages i-viii
Function Spaces....Pages 1-216
Nonlinear and Multivalued Maps....Pages 217-408
Smooth and Nonsmooth Calculus....Pages 409-616
Degree Theory and Fixed Point Theory....Pages 617-803
Variational and Topological Methods....Pages 805-1034
Back Matter....Pages 1035-1062