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Differential equations and boundary value problems : computing and modeling / C. Henry Edwards, David E. Penney
Harlow : Prentice Hall, 2004
787 p. ; 26cm.
Edwards, C. Henry
This best-selling text by these well-known authors blends the traditional algebra problem solving skills with the conceptual development and geometric visualization of a modern differential equations course that is essential to science and engineering students. It reflects the new qualitative approach that is altering the learning of elementary differential equations, including the wide availability of scientific computing environments like Maple, Mathematica, and MATLAB. Its focus balances the traditional manual methods with the new computer-based methods that illuminate qualitative phenomena and make accessible a wider range of more realistic applications. Seldom-used topics have been trimmed and new topics added: it starts and ends with discussions of mathematical modeling of real-world phenomena, evident in figures, examples, problems, and applications throughout the text.
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Partial differential equations and boundary value problems with maple / George A. Articolo
Amsterdam ; Boston : Academic Press/Elsevier, 2009
xi, 719 p. ; 24cm.
Articolo, George A.
Provides a quick overview of the software w/simple commands needed to get started Includes review material on linear algebra and Ordinary Differential equations, and their contribution in solving partial differential equations Incorporates an early introduction to Sturm-Liouville boundary problems and generalized eigenfunction expansions Numerous example problems and end of each chapter exercises
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Partial differential equations and boundary value problems with maple V / George A. Articolo
San Diego ; London : Academic Press, 1998
xii,628p. ; 24cm.
Articolo, George A.
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.
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