This edition offers a smaller, easier to read, and useful version of this classic textbook. While competing textbooks continue to grow, the book presents a slimmer, more concise option. Instructors and students alike are rejecting the encyclopedic tome with its higher and higher price aimed at undergraduates.
This edition offers a smaller, easier to read, and useful version of this classic textbook. While competing textbooks continue to grow, the book presents a slimmer, more concise option. Instructors and students alike are rejecting the encyclopedic tome with its higher and higher price aimed at undergraduates.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dean G. Duffy is a former mathematics instructor at the US Naval Academy and US Military Academy. He spent 25 years working on numerical weather prediction, oceanic wave modeling, and dynamical meteorology at NASA's Goddard Space Flight Center. Prior to this, he was a numerical weather prediction officer in the US Air Force. He earned his Ph.D. in meteorology from MIT. Dr. Duffy has written several books on transform methods, engineering mathematics, and mixed boundary value problems including Green's Functions with Applications, Second Edition, published by CRC Press.
Inhaltsangabe
Introduction List of Definitions Chapter 1: First-Order Ordinary Differential Equations 1 Chapter 2: Higher-Order Ordinary Differential Equations Chapter 3: Linear Algebra Chapter 4: Vector Calculus Chapter 5: Fourier Series Chapter 6: The Fourier Transform Chapter 7: The Laplace Transform Chapter 8: The Wave Equation Chapter 9: The Heat Equation Chapter 10: Laplace's Equation Chapter 11: The Sturm-Liouville Problem Chapter 12: Special Functions Appendix A: Derivation of the Laplacian in Polar Coordinates 565 Appendix B: Derivation of the Laplacian in Spherical Polar Coordinates 566 Answers Index
Introduction List of Definitions Chapter 1: First-Order Ordinary Differential Equations 1 Chapter 2: Higher-Order Ordinary Differential Equations Chapter 3: Linear Algebra Chapter 4: Vector Calculus Chapter 5: Fourier Series Chapter 6: The Fourier Transform Chapter 7: The Laplace Transform Chapter 8: The Wave Equation Chapter 9: The Heat Equation Chapter 10: Laplace's Equation Chapter 11: The Sturm-Liouville Problem Chapter 12: Special Functions Appendix A: Derivation of the Laplacian in Polar Coordinates 565 Appendix B: Derivation of the Laplacian in Spherical Polar Coordinates 566 Answers Index
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