Partial Differential Equations & Boundary Value Problems with Maple V
Academic Press Inc (Verlag)
978-0-12-064475-9 (ISBN)
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George Articulo covers all the material found in traditional partial differentiation equations and boundary value courses in this textbook. Its unique approach allows students to learn the mathematics first, then use Maple graphics capabilities to visualize both static and animated behavior of the solution. The book provides many example problems using commands that render two- or three-dimensional animated graphics. The author focuses on the natural union between partial differential equations and a powerful computational language such as Maple.
Dr. George A. Articolo has 35 years of teaching experience in physics and applied mathematics at Rutgers University, and has been a consultant for several government research laboratories and aerospace corporations. He has a Ph.D. in mathematical physics with degrees from Temple University and Rensselaer Polytechnic Institute.
Basic Review
Ordinary Linear Differential Equations
Sturm-Liouville Eigenvalue Problems and Generalized Fourier Series
The Diffusion or Heat Partial Differential Equation
The Wave Partial Differential Equation
The Laplace Partial Differential Equation
The Diffusion Equation in Two Spatial Dimensions
The Wave Equation in Two Spatial Dimensions
Non-Homogeneous Partial Differential Equations
Infinite and Semi-Infinite Spatial Domains
Laplace Transform Methods for Partial Differential Equations
Selected References on Partial Differential Equations
Selected References on Maple V
Erscheint lt. Verlag | 7.5.1998 |
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Verlagsort | San Diego |
Sprache | englisch |
Maße | 191 x 235 mm |
Gewicht | 1100 g |
Themenwelt | Mathematik / Informatik ► Informatik ► Theorie / Studium |
Mathematik / Informatik ► Mathematik ► Analysis | |
Mathematik / Informatik ► Mathematik ► Angewandte Mathematik | |
ISBN-10 | 0-12-064475-4 / 0120644754 |
ISBN-13 | 978-0-12-064475-9 / 9780120644759 |
Zustand | Neuware |
Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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