Fundamentals of matrix computations
Material type:
TextPublication details: New York: Wiley, 2002.Edition: 2ndDescription: xiii, 618pISBN: - 9780471213949
- 512.9434 WAT-F
| Item type | Current library | Home library | Call number | Materials specified | Status | Date due | Barcode | |
|---|---|---|---|---|---|---|---|---|
| Books and Monographs | Central Library, NIT Jalandhar General Stacks | Central Library, NIT Jalandhar | 512.9434 WAT-F (Browse shelf(Opens below)) | Available | 82952 |
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| 512.9434 LAU-M Matrix analysis for scientists & engineers | 512.9434 MA-S Survey of matrix theory and matrix inequalities | 512.9434 PIZ-M Matrix theory: from generalized inverses to jordan form | 512.9434 WAT-F Fundamentals of matrix computations | 512.9434 ZH-M Matrix inequalities | 512.9434 ZH-M Matrix inequalities | 512.9435 L215T The theory of matrices with applications |
A significantly revised and improved introduction to a critical aspect of scientific computation
Matrix computations lie at the heart of most scientific computational tasks. For any scientist or engineer doing large-scale simulations, an understanding of the topic is essential. Fundamentals of Matrix Computations, Second Edition explains matrix computations and the accompanying theory clearly and in detail, along with useful insights.
This Second Edition of a popular text has now been revised and improved to appeal to the needs of practicing scientists and graduate and advanced undergraduate students. New to this edition is the use of MATLAB for many of the exercises and examples, although the Fortran exercises in the First Edition have been kept for those who want to use them. This new edition includes:
* Numerous examples and exercises on applications including electrical circuits, elasticity (mass-spring systems), and simple partial differential equations
* Early introduction of the singular value decomposition
* A new chapter on iterative methods, including the powerful preconditioned conjugate-gradient method for solving symmetric, positive definite systems
* An introduction to new methods for solving large, sparse eigenvalue problems including the popular implicitly-restarted Arnoldi and Jacobi-Davidson methods
With in-depth discussions of such other topics as modern componentwise error analysis, reorthogonalization, and rank-one updates of the QR decomposition, Fundamentals of Matrix Computations, Second Edition will prove to be a versatile companion to novice and practicing mathematicians who seek mastery of matrix computation.
