Description

Book Synopsis
Numerical methods are playing an ever-increasing role in physics and engineering. This is especially true after the recent explosion of computing power on the desk-top. This book is aimed at helping the user to make intelligent use of this power tool. Each method is introduced through realistic examples and actual computer programs. The explanations provide the background for making a choice between similar approaches and the knowledge to explore the network for the appropriate existing codes. Tedious proofs and derivations, on the other hand, are delegated to references. Examples of uncoventional methods are also given to stimulate readers in exploring new ways of solving problems.

Table of Contents
Computational methods; integration and differentiation; interpolation and extrapolation; special functions; matrices; methods of least squares; Monte Carlo calculations; finite difference solution of differential equations; finite element solution to PDE; appendix A - decomposition into prime numbers; bit-reversed order; Gaussian elimination of a tridiagonal matrix; random bit generator; reduction of higher-order ODE to first-order; appendix B - list of Fortran programme examples.

Computational Methods In Physics And Engineering

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A Paperback / softback by Samuel S M Wong

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    View other formats and editions of Computational Methods In Physics And Engineering by Samuel S M Wong

    Publisher: World Scientific Publishing Co Pte Ltd
    Publication Date: 15/03/1997
    ISBN13: 9789810230432, 978-9810230432
    ISBN10: 9810230435

    Description

    Book Synopsis
    Numerical methods are playing an ever-increasing role in physics and engineering. This is especially true after the recent explosion of computing power on the desk-top. This book is aimed at helping the user to make intelligent use of this power tool. Each method is introduced through realistic examples and actual computer programs. The explanations provide the background for making a choice between similar approaches and the knowledge to explore the network for the appropriate existing codes. Tedious proofs and derivations, on the other hand, are delegated to references. Examples of uncoventional methods are also given to stimulate readers in exploring new ways of solving problems.

    Table of Contents
    Computational methods; integration and differentiation; interpolation and extrapolation; special functions; matrices; methods of least squares; Monte Carlo calculations; finite difference solution of differential equations; finite element solution to PDE; appendix A - decomposition into prime numbers; bit-reversed order; Gaussian elimination of a tridiagonal matrix; random bit generator; reduction of higher-order ODE to first-order; appendix B - list of Fortran programme examples.

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