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Numerical bifurcation analysis for reaction-diffusion equations
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Reaction-Diffusion Equations
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Chapter 2
Continuation of Nonsingular Solutions
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Chapter 3
Detecting and Computing Bifurcation Points
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Chapter 4
Branch Switching at Simple Bifurcation Points
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Chapter 5
Bifurcation Problems with Symmetry
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Chapter 6
Liapunov-Schmidt Method
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Chapter 7
Center Manifold Theory
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Chapter 8
A Numerical Bifurcation Function for Homoclinic Orbits
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Chapter 9
One-Dimensional Reaction-Diffusion Equations
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Chapter 10
Reaction-Diffusion Equations on a Square
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Chapter 11
Normal Forms for Hopf Bifurcations
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Chapter 12
Steady/Steady State Mode Interactions
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Chapter 13
Hopf/Steady State Mode Interactions
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Chapter 14
Homotopy of Boundary Conditions
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Chapter 15
Bifurcations along a Homotopy of Boundary Conditions
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Chapter 16
A Mode Interaction on a Homotopy of Boundary Conditions
Overall attention for this book and its chapters
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Mentioned by
syllabi
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wikipedia
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Citations
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Book overview
1. Reaction-Diffusion Equations
2. Continuation of Nonsingular Solutions
3. Detecting and Computing Bifurcation Points
4. Branch Switching at Simple Bifurcation Points
5. Bifurcation Problems with Symmetry
6. Liapunov-Schmidt Method
7. Center Manifold Theory
8. A Numerical Bifurcation Function for Homoclinic Orbits
9. One-Dimensional Reaction-Diffusion Equations
10. Reaction-Diffusion Equations on a Square
11. Normal Forms for Hopf Bifurcations
12. Steady/Steady State Mode Interactions
13. Hopf/Steady State Mode Interactions
14. Homotopy of Boundary Conditions
15. Bifurcations along a Homotopy of Boundary Conditions
16. A Mode Interaction on a Homotopy of Boundary Conditions
Summary
Syllabi
Wikipedia
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This data is correct as of December 2015 - for more up to date information, please visit
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