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A Topological Introduction to Nonlinear Analysis
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
The Topological Point of View
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Chapter 2
Ascoli-Arzela Theory
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Chapter 3
Brouwer Fixed Point Theory
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Chapter 4
Schauder Fixed Point Theory
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Chapter 5
The Forced Pendulum
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Chapter 6
Equilibrium Heat Distribution
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Chapter 7
Generalized Bernstein Theory
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Chapter 8
Brouwer Degree
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Chapter 9
Properties of the Brouwer Degree
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Chapter 10
Leray-Schauder Degree
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Chapter 11
Properties of the Leray-Schauder Degree
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Chapter 12
The Mawhin Operator
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Chapter 13
The Pendulum Swings Back
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Chapter 14
A Separation Theorem
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Chapter 15
Compact Linear Operators
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Chapter 16
The Degree Calculation
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Chapter 17
The Krasnoselskii-Rabinowitz Bifurcation Theorem
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Chapter 18
Nonlinear Sturm-Liouville Theory
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Chapter 19
More Sturm-Liouville Theory
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Chapter 20
Euler Buckling
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Chapter 21
Singular Homology
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Chapter 22
Additivity and Product Properties
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Chapter 23
Bounded Linear Transformations
Overall attention for this book and its chapters
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Mentioned by
syllabi
2
institutions with syllabi
q&a
1
Q&A thread
Citations
dimensions_citation
21
Dimensions
Book overview
1. The Topological Point of View
2. Ascoli-Arzela Theory
3. Brouwer Fixed Point Theory
4. Schauder Fixed Point Theory
5. The Forced Pendulum
6. Equilibrium Heat Distribution
7. Generalized Bernstein Theory
8. Brouwer Degree
9. Properties of the Brouwer Degree
10. Leray-Schauder Degree
11. Properties of the Leray-Schauder Degree
12. The Mawhin Operator
13. The Pendulum Swings Back
14. A Separation Theorem
15. Compact Linear Operators
16. The Degree Calculation
17. The Krasnoselskii-Rabinowitz Bifurcation Theorem
18. Nonlinear Sturm-Liouville Theory
19. More Sturm-Liouville Theory
20. Euler Buckling
21. Singular Homology
22. Additivity and Product Properties
23. Bounded Linear Transformations
Summary
Syllabi
Q&A
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
2
syllabi from
2
institutions on Open Syllabus Project.
Institution
Syllabi count
Course subject areas covered
George Mason University
1
Unknown
King's College London, University of London
1
Unknown