An Introduction to Partial Differential Equations with MATLAB
eBook - PDF
Available until 7 Feb |Learn more

An Introduction to Partial Differential Equations with MATLAB

  1. 683 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF
Available until 7 Feb |Learn more

An Introduction to Partial Differential Equations with MATLAB

About this book

An Introduction to Partial Differential Equations with MATLAB, Second Edition illustrates the usefulness of PDEs through numerous applications and helps students appreciate the beauty of the underlying mathematics. Updated throughout, this second edition of a bestseller shows students how PDEs can model diverse problems, including the flow of heat,

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Yes, you can access An Introduction to Partial Differential Equations with MATLAB by Matthew P. Coleman in PDF and/or ePUB format, as well as other popular books in Mathematics & Applied Mathematics. We have over one million books available in our catalogue for you to explore.

Information

Table of contents

  1. Front Cover
  2. Series Page
  3. Dedication
  4. Contents
  5. Preface
  6. Prelude to Chapter 1
  7. Chapter 1: Introduction
  8. Prelude to Chapter 2
  9. Chapter 2: The Big Three PDEs
  10. Prelude to Chapter 3
  11. Chapter 3: Fourier Series
  12. Prelude to Chapter 4
  13. Chapter 4: Solving the Big Three PDEs on Finite Domains
  14. Prelude to Chapter 5
  15. Chapter 5: Characteristics
  16. Prelude to Chapter 6
  17. Chapter 6: Integral Transforms
  18. Prelude to Chapter 7
  19. Chapter 7: Special Functions and Orthogonal Polynomials
  20. Prelude to Chapter 8
  21. Chapter 8: Sturm–Liouville Theory and Generalized Fourier Series
  22. Prelude to Chapter 9
  23. Chapter 9: PDEs in Higher Dimensions
  24. Prelude to Chapter 10
  25. Chapter 10: Nonhomogeneous Problems and Green’s Functions
  26. Prelude to Chapter 11
  27. Chapter 11: Numerical Methods
  28. Appendix A: Uniform Convergence; Differentiation and Integration of Fourier Series
  29. Appendix B: Other Important Theorems
  30. Appendix C: Existence and Uniqueness Theorems
  31. Appendix D: A Menagerie of PDEs
  32. Appendix E: MATLAB Code for Figures and Exercises
  33. Appendix F: Answers to Selected Exercises
  34. References
  35. Back Cover