Applied Partial Differential Equations with Fourier Series and Boundary Value Problems, Books a la Carte by Haberman, Richard

Applied Partial Differential Equations with Fourier Series and Boundary Value Problems, Books a la Carte

This edition features the exact same content as the traditional text in a convenient, three-hole-punched, loose-leaf version....
BD$380.90 BMD
BD$380.90 BMD
SKU: 9780321797063
Product Type: Books
Please hurry! Only 0 left in stock
Author: Richard Haberman
Format: Loose Leaf
Language: English
Subtotal: BD$380.90
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Applied Partial Differential Equations with Fourier Series and Boundary Value Problems, Books a la Carte by Haberman, Richard

Applied Partial Differential Equations with Fourier Series and Boundary Value Problems, Books a la Carte

BD$380.90

Applied Partial Differential Equations with Fourier Series and Boundary Value Problems, Books a la Carte

BD$380.90
Author: Richard Haberman
Format: Loose Leaf
Language: English
This edition features the exact same content as the traditional text in a convenient, three-hole-punched, loose-leaf version. Books a la Carte also offer a great value--this format costs significantly less than a new textbook. This text emphasizes the physical interpretation of mathematical solutions and introduces applied mathematics while presenting differential equations. Coverage includes Fourier series, orthogonal functions, boundary value problems, Green's functions, and transform methods. This text is ideal for students in science, engineering, and applied mathematics.

Author: Richard Haberman
Publisher: Pearson
Published: 08/24/2012
Pages: 792
Binding Type: Loose Leaf
Weight: 2.25lbs
Size: 9.10h x 7.30w x 1.00d
ISBN: 9780321797063

About the Author
About our author

Richard Haberman is Professor of Mathematics at Southern Methodist University, having previously taught at The Ohio State University, Rutgers University, and the University of California at San Diego. He received S.B. and Ph.D. degrees in applied mathematics from the Massachusetts Institute of Technology. He has supervised six Ph.D. students at SMU. His research has been funded by NSF and AFOSR. His research in applied mathematics has been published in prestigious international journals and include research on nonlinear wave motion (shocks, solitons, dispersive waves, caustics), nonlinear dynamical systems (bifurcations, homoclinic transitions, chaos), singular perturbation methods (partial differential equations, matched asymptotic expansions, boundary layers) and mathematical models (fluid dynamics, fiber optics). He is a member of the Society for Industrial and Applied Mathematics and the American Mathematical Society. He has taught a wide range of undergraduate and graduate mathematics. He has published undergraduate texts on Mathematical Models (Mechanical Vibrations, Population Dynamics, and Traffic Flow) and Ordinary Differential Equations.




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