Computational Theory Of Iterative Methods


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Computational Theory of Iterative Methods


Computational Theory of Iterative Methods

Author: Ioannis Argyros

language: en

Publisher: Elsevier

Release Date: 2007-09-04


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The book is designed for researchers, students and practitioners interested in using fast and efficient iterative methods to approximate solutions of nonlinear equations. The following four major problems are addressed. Problem 1: Show that the iterates are well defined. Problem 2: concerns the convergence of the sequences generated by a process and the question of whether the limit points are, in fact solutions of the equation. Problem 3: concerns the economy of the entire operations. Problem 4: concerns with how to best choose a method, algorithm or software program to solve a specific type of problem and its description of when a given algorithm succeeds or fails. The book contains applications in several areas of applied sciences including mathematical programming and mathematical economics. There is also a huge number of exercises complementing the theory.- Latest convergence results for the iterative methods - Iterative methods with the least computational cost- Iterative methods with the weakest convergence conditions- Open problems on iterative methods

Aspects of the Computational Theory for Certain Iterative Methods


Aspects of the Computational Theory for Certain Iterative Methods

Author: Ioannis K. Argyros

language: en

Publisher: Polimetrica s.a.s.

Release Date: 2009


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Iterative Methods for Linear Systems


Iterative Methods for Linear Systems

Author: Maxim A. Olshanskii

language: en

Publisher: SIAM

Release Date: 2014-01-01


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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.