Arpack Users Guide

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ARPACK Users' Guide

Author : Richard B. Lehoucq,Danny C. Sorensen,Chao Yang
Publisher : SIAM
Page : 150 pages
File Size : 49,5 Mb
Release : 1998-01-01
Category : Mathematics
ISBN : 9780898714074

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ARPACK Users' Guide by Richard B. Lehoucq,Danny C. Sorensen,Chao Yang Pdf

This book is a guide to understanding and using the software package ARPACK to solve large algebraic eigenvalue problems. The software described is based on the implicitly restarted Arnoldi method, which has been heralded as one of the three most important advances in large scale eigenanalysis in the past ten years. The book explains the acquisition, installation, capabilities, and detailed use of the software for computing a desired subset of the eigenvalues and eigenvectors of large (sparse) standard or generalized eigenproblems. It also discusses the underlying theory and algorithmic background at a level that is accessible to the general practitioner.

LAPACK Users' Guide

Author : E. Anderson,Z. Bai,C. Bischof,S. Blackford,J. Dongarra,J. Du Croz,A. Greenbaum,S. Hammarling,A. McKenney,D. Sorensen
Publisher : SIAM
Page : 428 pages
File Size : 41,7 Mb
Release : 1999-01-01
Category : Mathematics
ISBN : 0898719607

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LAPACK Users' Guide by E. Anderson,Z. Bai,C. Bischof,S. Blackford,J. Dongarra,J. Du Croz,A. Greenbaum,S. Hammarling,A. McKenney,D. Sorensen Pdf

LAPACK is a library of numerical linear algebra subroutines designed for high performance on workstations, vector computers, and shared memory multiprocessors. Release 3.0 of LAPACK introduces new routines and extends the functionality of existing routines.

ScaLAPACK Users' Guide

Author : L. S. Blackford
Publisher : SIAM
Page : 362 pages
File Size : 47,5 Mb
Release : 1997-01-01
Category : Mathematics
ISBN : 0898713978

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ScaLAPACK Users' Guide by L. S. Blackford Pdf

ScaLAPACK is an acronym for Scalable Linear Algebra Package or Scalable LAPACK. It is a library of high-performance linear algebra routines for distributed memory message-passing MIMD computers and networks of workstations supporting parallel virtual machine (PVM) and/or message passing interface (MPI). It is a continuation of the LAPACK project, which designed and produced analogous software for workstations, vector supercomputers, and shared memory parallel computers. Both libraries contain routines for solving systems of linear equations, least squares problems, and eigenvalue problems. The goals of both projects are efficiency, scalability, reliability, portability, flexibility, and ease of use. ScaLAPACK includes routines for the solution of dense, band, and tridiagonal linear systems of equations, condition estimation and iterative refinement, for LU and Cholesky factorization, matrix inversion, full-rank linear least squares problems, orthogonal and generalized orthogonal factorizations, orthogonal transformation routines, reductions to upper Hessenberg, bidiagonal and tridiagonal form, reduction of a symmetric-definite/ Hermitian-definite generalized eigenproblem to standard form, the symmetric/Hermitian, generalized symmetric/Hermitian, and nonsymmetric eigenproblem, and the singular value decomposition. Prototype codes are provided for out-of-core linear solvers for LU, Cholesky, and QR, the matrix sign function for eigenproblems, an HPF interface to a subset of ScaLAPACK routines, and SuperLU. Software is available in single-precision real, double-precision real, single-precision complex, and double-precision complex. The software has been written to be portable across a wide range of distributed-memory environments such as the Cray T3, IBM SP, Intel series, TM CM-5, networks of workstations, and any system for which PVM or MPI is available. Each Users' Guide includes a CD-ROM containing the HTML version of the ScaLAPACK Users' Guide, the source code for ScaLAPACK and LAPACK, testing and timing programs, prebuilt versions of the library for a number of computers, example programs, and the full set of LAPACK Working Notes.

LAPACK95 Users' Guide

Author : V. A. Barker,L. S. Blackford,J. Dongarra,J. Du Croz,S. Hammarling,M. Marinova,J. Wa?niewski,P. Yalamov
Publisher : SIAM
Page : 270 pages
File Size : 42,9 Mb
Release : 2001-01-01
Category : Technology & Engineering
ISBN : 9780898715040

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LAPACK95 Users' Guide by V. A. Barker,L. S. Blackford,J. Dongarra,J. Du Croz,S. Hammarling,M. Marinova,J. Wa?niewski,P. Yalamov Pdf

LAPACK95 Users' Guide provides an introduction to the design of the LAPACK95 package.

Handbook of Linear Algebra

Author : Leslie Hogben
Publisher : CRC Press
Page : 1402 pages
File Size : 51,6 Mb
Release : 2006-11-02
Category : Mathematics
ISBN : 9781420010572

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Handbook of Linear Algebra by Leslie Hogben Pdf

The Handbook of Linear Algebra provides comprehensive coverage of linear algebra concepts, applications, and computational software packages in an easy-to-use handbook format. The esteemed international contributors guide you from the very elementary aspects of the subject to the frontiers of current research. The book features an accessibl

Handbook of Linear Algebra, Second Edition

Author : Leslie Hogben
Publisher : CRC Press
Page : 1906 pages
File Size : 55,9 Mb
Release : 2013-11-26
Category : Mathematics
ISBN : 9781466507289

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Handbook of Linear Algebra, Second Edition by Leslie Hogben Pdf

With a substantial amount of new material, the Handbook of Linear Algebra, Second Edition provides comprehensive coverage of linear algebra concepts, applications, and computational software packages in an easy-to-use format. It guides you from the very elementary aspects of the subject to the frontiers of current research. Along with revisions and updates throughout, the second edition of this bestseller includes 20 new chapters. New to the Second Edition Separate chapters on Schur complements, additional types of canonical forms, tensors, matrix polynomials, matrix equations, special types of matrices, generalized inverses, matrices over finite fields, invariant subspaces, representations of quivers, and spectral sets New chapters on combinatorial matrix theory topics, such as tournaments, the minimum rank problem, and spectral graph theory, as well as numerical linear algebra topics, including algorithms for structured matrix computations, stability of structured matrix computations, and nonlinear eigenvalue problems More chapters on applications of linear algebra, including epidemiology and quantum error correction New chapter on using the free and open source software system Sage for linear algebra Additional sections in the chapters on sign pattern matrices and applications to geometry Conjectures and open problems in most chapters on advanced topics Highly praised as a valuable resource for anyone who uses linear algebra, the first edition covered virtually all aspects of linear algebra and its applications. This edition continues to encompass the fundamentals of linear algebra, combinatorial and numerical linear algebra, and applications of linear algebra to various disciplines while also covering up-to-date software packages for linear algebra computations.

Simulating, Analyzing, and Animating Dynamical Systems

Author : Bard Ermentrout
Publisher : SIAM
Page : 298 pages
File Size : 52,9 Mb
Release : 2002-01-01
Category : Mathematics
ISBN : 9780898715064

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Simulating, Analyzing, and Animating Dynamical Systems by Bard Ermentrout Pdf

Simulating, Analyzing, and Animating Dynamical Systems: A Guide to XPPAUT for Researchers and Students provides sophisticated numerical methods for the fast and accurate solution of a variety of equations, including ordinary differential equations, delay equations, integral equations, functional equations, and some partial differential equations, as well as boundary value problems. It introduces many modeling techniques and methods for analyzing the resulting equations. Instructors, students, and researchers will all benefit from this book, which demonstrates how to use software tools to simulate and study sets of equations that arise in a variety of applications. Instructors will learn how to use computer software in their differential equations and modeling classes, while students will learn how to create animations of their equations that can be displayed on the World Wide Web. Researchers will be introduced to useful tricks that will allow them to take full advantage of XPPAUT's capabilities.

Accuracy and Reliability in Scientific Computing

Author : Bo Einarsson
Publisher : SIAM
Page : 348 pages
File Size : 44,8 Mb
Release : 2005-08-01
Category : Science
ISBN : 9780898715842

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Accuracy and Reliability in Scientific Computing by Bo Einarsson Pdf

This book investigates some of the difficulties related to scientific computing, describing how these can be overcome.

Understanding Search Engines

Author : Michael W. Berry,Murray Browne
Publisher : SIAM
Page : 125 pages
File Size : 43,6 Mb
Release : 2005-05-01
Category : Computers
ISBN : 9780898715811

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Understanding Search Engines by Michael W. Berry,Murray Browne Pdf

This text covers design issues for building search engines, emphasizing the role that applied mathematics plays in improving information retrieval.

A Tutorial on Elliptic PDE Solvers and Their Parallelization

Author : Craig C. Douglas,Gundolf Haase,Ulrich Langer
Publisher : SIAM
Page : 153 pages
File Size : 54,6 Mb
Release : 2003-01-01
Category : Technology & Engineering
ISBN : 0898718171

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A Tutorial on Elliptic PDE Solvers and Their Parallelization by Craig C. Douglas,Gundolf Haase,Ulrich Langer Pdf

This compact yet thorough tutorial is the perfect introduction to the basic concepts of solving partial differential equations (PDEs) using parallel numerical methods. In just eight short chapters, the authors provide readers with enough basic knowledge of PDEs, discretization methods, solution techniques, parallel computers, parallel programming, and the run-time behavior of parallel algorithms to allow them to understand, develop, and implement parallel PDE solvers. Examples throughout the book are intentionally kept simple so that the parallelization strategies are not dominated by technical details.

The Lanczos Method

Author : Louis Komzsik
Publisher : SIAM
Page : 89 pages
File Size : 40,5 Mb
Release : 2003-01-01
Category : Mathematics
ISBN : 9780898715378

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The Lanczos Method by Louis Komzsik Pdf

A valuable reference on the Lanczos method for graduate numerical analysts and engineers.

The Lanczos and Conjugate Gradient Algorithms

Author : Gerard Meurant
Publisher : SIAM
Page : 374 pages
File Size : 54,5 Mb
Release : 2006-08-01
Category : Computers
ISBN : 9780898716160

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The Lanczos and Conjugate Gradient Algorithms by Gerard Meurant Pdf

The most comprehensive and up-to-date discussion available of the Lanczos and CG methods for computing eigenvalues and solving linear systems.

Numerical Linear Algebra on High-Performance Computers

Author : Jack J. Dongarra,Iain S. Duff,Danny C. Sorensen,Henk A. van der Vorst
Publisher : SIAM
Page : 353 pages
File Size : 48,8 Mb
Release : 1998-01-01
Category : Computers
ISBN : 9780898714289

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Numerical Linear Algebra on High-Performance Computers by Jack J. Dongarra,Iain S. Duff,Danny C. Sorensen,Henk A. van der Vorst Pdf

Provides a rapid introduction to the world of vector and parallel processing for these linear algebra applications.

Templates for the Solution of Algebraic Eigenvalue Problems

Author : Zhaojun Bai,James Demmel,Jack Dongarra,Axel Ruhe,Henk van der Vorst
Publisher : SIAM
Page : 430 pages
File Size : 48,6 Mb
Release : 2000-01-01
Category : Computers
ISBN : 9780898714715

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Templates for the Solution of Algebraic Eigenvalue Problems by Zhaojun Bai,James Demmel,Jack Dongarra,Axel Ruhe,Henk van der Vorst Pdf

Mathematics of Computing -- Numerical Analysis.

Performance Optimization of Numerically Intensive Codes

Author : Stefan Goedecker,Adolfy Hoisie
Publisher : SIAM
Page : 184 pages
File Size : 43,5 Mb
Release : 2001-01-01
Category : Computer architecture
ISBN : 089871821X

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Performance Optimization of Numerically Intensive Codes by Stefan Goedecker,Adolfy Hoisie Pdf

Performance Optimization of Numerically Intensive Codes offers a comprehensive, tutorial-style, hands-on, introductory and intermediate-level treatment of all the essential ingredients for achieving high performance in numerical computations on modern computers. The authors explain computer architectures, data traffic and issues related to performance of serial and parallel code optimization exemplified by actual programs written for algorithms of wide interest. The unique hands-on style is achieved by extensive case studies using realistic computational problems. The performance gain obtained by applying the techniques described in this book can be very significant. The book bridges the gap between the literature in system architecture, the one in numerical methods and the occasional descriptions of optimization topics in computer vendors' literature. It also allows readers to better judge the suitability of certain computer architecture to their computational requirements. In contrast to standard textbooks on computer architecture and on programming techniques the book treats these topics together at the level necessary for writing high-performance programs. The book facilitates easy access to these topics for computational scientists and engineers mainly interested in practical issues related to efficient code development.