Partial Differential Equations For Scientists And Engineers

Author:   Geoffrey Stephenson (Imperial College, Univ Of London, Uk)
Publisher:   Imperial College Press
Edition:   New ed of 3 Revised ed
ISBN:  

9781860940248


Pages:   176
Publication Date:   18 July 1996
Format:   Paperback
Availability:   In Print   Availability explained
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Partial Differential Equations For Scientists And Engineers


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Overview

Partial differential equations form an essential part of the core mathematics syllabus for undergraduate scientists and engineers. The origins and applications of such equations occur in a variety of different fields, ranging from fluid dynamics, electromagnetism, heat conduction and diffusion, to quantum mechanics, wave propagation and general relativity. This volume introduces the important methods used in the solution of partial differential equations. Written primarily for second-year and final-year students taking physics and engineering courses, it should also be of value to mathematicians studying mathematical methods as part of their course. The text, which assumes only that the reader has followed a good basic first-year ancillary mathematics course, is self-contained.

Full Product Details

Author:   Geoffrey Stephenson (Imperial College, Univ Of London, Uk)
Publisher:   Imperial College Press
Imprint:   Imperial College Press
Edition:   New ed of 3 Revised ed
Dimensions:   Width: 9.10cm , Height: 1.00cm , Length: 22.00cm
Weight:   0.249kg
ISBN:  

9781860940248


ISBN 10:   1860940242
Pages:   176
Publication Date:   18 July 1996
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Basic concepts; classification of equations and boundary conditions; orthonormal functions; applications of Fourier's method; problems involving cylindrical and spherical symmetry; continuous eigenvalues and Fourier integrals; the Laplace transform; transform method for boundary value problems; Green's functions and generalized functions; the numerical approach; answers to problems.

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