Iterative Krylov Methods for Large Linear Systems
Title | Iterative Krylov Methods for Large Linear Systems PDF eBook |
Author | H. A. van der Vorst |
Publisher | Cambridge University Press |
Pages | 242 |
Release | 2003-04-17 |
Genre | Mathematics |
ISBN | 9780521818285 |
Table of contents
Iterative Methods for Sparse Linear Systems
Title | Iterative Methods for Sparse Linear Systems PDF eBook |
Author | Yousef Saad |
Publisher | SIAM |
Pages | 537 |
Release | 2003-04-01 |
Genre | Mathematics |
ISBN | 0898715342 |
Mathematics of Computing -- General.
Iterative Methods for Linear Systems
Title | Iterative Methods for Linear Systems PDF eBook |
Author | Maxim A. Olshanskii |
Publisher | SIAM |
Pages | 257 |
Release | 2014-07-21 |
Genre | Mathematics |
ISBN | 1611973465 |
Iterative Methods for Linear Systems?offers a mathematically rigorous introduction to fundamental iterative methods for systems of linear algebraic equations. The book distinguishes itself from other texts on the topic by providing a straightforward yet comprehensive analysis of the Krylov subspace methods, approaching the development and analysis of algorithms from various algorithmic and mathematical perspectives, and going beyond the standard description of iterative methods by connecting them in a natural way to the idea of preconditioning.??
Iterative Methods for Large Linear Systems
Title | Iterative Methods for Large Linear Systems PDF eBook |
Author | David Ronald Kincaid |
Publisher | |
Pages | 360 |
Release | 1990 |
Genre | Mathematics |
ISBN |
Very Good,No Highlights or Markup,all pages are intact.
Iterative Methods and Preconditioners for Systems of Linear Equations
Title | Iterative Methods and Preconditioners for Systems of Linear Equations PDF eBook |
Author | Gabriele Ciaramella |
Publisher | SIAM |
Pages | 285 |
Release | 2022-02-08 |
Genre | Mathematics |
ISBN | 1611976901 |
Iterative methods use successive approximations to obtain more accurate solutions. This book gives an introduction to iterative methods and preconditioning for solving discretized elliptic partial differential equations and optimal control problems governed by the Laplace equation, for which the use of matrix-free procedures is crucial. All methods are explained and analyzed starting from the historical ideas of the inventors, which are often quoted from their seminal works. Iterative Methods and Preconditioners for Systems of Linear Equations grew out of a set of lecture notes that were improved and enriched over time, resulting in a clear focus for the teaching methodology, which derives complete convergence estimates for all methods, illustrates and provides MATLAB codes for all methods, and studies and tests all preconditioners first as stationary iterative solvers. This textbook is appropriate for undergraduate and graduate students who want an overview or deeper understanding of iterative methods. Its focus on both analysis and numerical experiments allows the material to be taught with very little preparation, since all the arguments are self-contained, and makes it appropriate for self-study as well. It can be used in courses on iterative methods, Krylov methods and preconditioners, and numerical optimal control. Scientists and engineers interested in new topics and applications will also find the text useful.
Iterative Methods for Solving Linear Systems
Title | Iterative Methods for Solving Linear Systems PDF eBook |
Author | Anne Greenbaum |
Publisher | SIAM |
Pages | 225 |
Release | 1997-01-01 |
Genre | Mathematics |
ISBN | 089871396X |
Mathematics of Computing -- Numerical Analysis.
Iterative Methods and Preconditioning for Large and Sparse Linear Systems with Applications
Title | Iterative Methods and Preconditioning for Large and Sparse Linear Systems with Applications PDF eBook |
Author | Daniele Bertaccini |
Publisher | CRC Press |
Pages | 321 |
Release | 2018-02-19 |
Genre | Mathematics |
ISBN | 1351649612 |
This book describes, in a basic way, the most useful and effective iterative solvers and appropriate preconditioning techniques for some of the most important classes of large and sparse linear systems. The solution of large and sparse linear systems is the most time-consuming part for most of the scientific computing simulations. Indeed, mathematical models become more and more accurate by including a greater volume of data, but this requires the solution of larger and harder algebraic systems. In recent years, research has focused on the efficient solution of large sparse and/or structured systems generated by the discretization of numerical models by using iterative solvers.