Ordinary Differential Equations and Dynamical Systems
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Book 1
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Book 1
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Book 1
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Home > Mathematics and Science Textbooks > Mathematics > Calculus and mathematical analysis > Ordinary Differential Equations and Dynamical Systems: (Graduate Studies in Mathematics)
Ordinary Differential Equations and Dynamical Systems: (Graduate Studies in Mathematics)

Ordinary Differential Equations and Dynamical Systems: (Graduate Studies in Mathematics)


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About the Book

This book provides a self-contained introduction to ordinary differential equations and dynamical systems suitable for beginning graduate students. The first part begins with some simple examples of explicitly solvable equations and a first glance at qualitative methods. Then the fundamental results concerning the initial value problem are proved: existence, uniqueness, extensibility, dependence on initial conditions. Furthermore, linear equations are considered, including the Floquet theorem, and some perturbation results. As somewhat independent topics, the Frobenius method for linear equations in the complex domain is established and Sturm-Liouville boundary value problems, including oscillation theory, are investigated. The second part introduces the concept of a dynamical system. The Poincare-Bendixson theorem is proved, and several examples of planar systems from classical mechanics, ecology, and electrical engineering are investigated. Moreover, attractors, Hamiltonian systems, the KAM theorem, and periodic solutions are discussed. Finally, stability is studied, including the stable manifold and the Hartman-Grobman theorem for both continuous and discrete systems. The third part introduces chaos, beginning with the basics for iterated interval maps and ending with the Smale-Birkhoff theorem and the Melnikov method for homoclinic orbits. The text contains almost three hundred exercises. Additionally, the use of mathematical software systems is incorporated throughout, showing how they can help in the study of differential equations.

Table of Contents:
Preface Chapter 1. Introduction Chapter 2. Initial value problems Chapter 3. Linear equations Chapter 4. Differential equations in the complex domain Chapter 5. Boundary value problems Chapter 6. Dynamical systems Chapter 7. Planar dynamical systems Chapter 8. Higher dimensional dynamical systems Chapter 9. Local behavior near fixed points Chapter 10. Discrete dynamical systems Chapter 11. Discrete dynamical systems in one dimension Chapter 12. Periodic solutions Chapter 13. Chaos in higher dimensional systems Bibliographical notes Bibliography Glossary of notation Index

About the Author :
Gerald Teschl is at University of Vienna, Austria.

Review :
It's easy to build all sorts of courses from this book — a classical one-semester course with a brief introduction to dynamical systems, a one-semester dynamical systems course with just brief coverage of the existence and linear systems theory, or a rather nice two-semester course based on most (if not all) of the material." - MAA Reviews


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Product Details
  • ISBN-13: 9780821883280
  • Publisher: American Mathematical Society
  • Publisher Imprint: American Mathematical Society
  • Language: English
  • Returnable: N
  • Weight: 797 gr
  • ISBN-10: 0821883283
  • Publisher Date: 19 Mar 2013
  • Binding: Hardback
  • No of Pages: 356
  • Series Title: Graduate Studies in Mathematics


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