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Conjugate Gradient Algorithms and Finite Element Methods (Paperback, Softcover reprint of the original 1st ed. 2004): Michal... Conjugate Gradient Algorithms and Finite Element Methods (Paperback, Softcover reprint of the original 1st ed. 2004)
Michal Krizek, Pekka Neittaanmaki, Roland Glowinski, Sergey Korotov
R2,992 Discovery Miles 29 920 Ships in 10 - 15 working days

The position taken in this collection of pedagogically written essays is that conjugate gradient algorithms and finite element methods complement each other extremely well.

Via their combinations practitioners have been able to solve complicated, direct and inverse, multidemensional problems modeled by ordinary or partial differential equations and inequalities, not necessarily linear, optimal control and optimal design being part of these problems.

The aim of this book is to present both methods in the context of complicated problems modeled by linear and nonlinear partial differential equations, to provide an in-depth discussion on their implementation aspects. The authors show that conjugate gradient methods and finite element methods apply to the solution of real-life problems. They address graduate students as well as experts in scientific computing.

Conjugate Gradient Algorithms and Finite Element Methods (Hardcover, 2004 ed.): Michal Krizek, Pekka Neittaanmaki, Roland... Conjugate Gradient Algorithms and Finite Element Methods (Hardcover, 2004 ed.)
Michal Krizek, Pekka Neittaanmaki, Roland Glowinski, Sergey Korotov
R3,040 Discovery Miles 30 400 Ships in 10 - 15 working days

The position taken in this collection of pedagogically written essays is that conjugate gradient algorithms and finite element methods complement each other extremely well.

Via their combinations practitioners have been able to solve complicated, direct and inverse, multidemensional problems modeled by ordinary or partial differential equations and inequalities, not necessarily linear, optimal control and optimal design being part of these problems.

The aim of this book is to present both methods in the context of complicated problems modeled by linear and nonlinear partial differential equations, to provide an in-depth discussion on their implementation aspects. The authors show that conjugate gradient methods and finite element methods apply to the solution of real-life problems. They address graduate students as well as experts in scientific computing.

Simplicial Partitions with Applications to the Finite Element Method (Paperback, 1st ed. 2020): Jan Brandts, Sergey Korotov,... Simplicial Partitions with Applications to the Finite Element Method (Paperback, 1st ed. 2020)
Jan Brandts, Sergey Korotov, Michal Krizek
R3,438 Discovery Miles 34 380 Ships in 10 - 15 working days

This monograph focuses on the mathematical and numerical analysis of simplicial partitions and the finite element method. This active area of research has become an essential part of physics and engineering, for example in the study of problems involving heat conduction, linear elasticity, semiconductors, Maxwell's equations, Einstein's equations and magnetic and gravitational fields. These problems require the simulation of various phenomena and physical fields over complicated structures in three (and higher) dimensions. Since not all structures can be decomposed into simpler objects like d-dimensional rectangular blocks, simplicial partitions are important. In this book an emphasis is placed on angle conditions guaranteeing the convergence of the finite element method for elliptic PDEs with given boundary conditions. It is aimed at a general mathematical audience who is assumed to be familiar with only a few basic results from linear algebra, geometry, and mathematical and numerical analysis.

Simplicial Partitions with Applications to the Finite Element Method (Hardcover, 1st ed. 2020): Jan Brandts, Sergey Korotov,... Simplicial Partitions with Applications to the Finite Element Method (Hardcover, 1st ed. 2020)
Jan Brandts, Sergey Korotov, Michal Krizek
R3,471 Discovery Miles 34 710 Ships in 10 - 15 working days

This monograph focuses on the mathematical and numerical analysis of simplicial partitions and the finite element method. This active area of research has become an essential part of physics and engineering, for example in the study of problems involving heat conduction, linear elasticity, semiconductors, Maxwell's equations, Einstein's equations and magnetic and gravitational fields. These problems require the simulation of various phenomena and physical fields over complicated structures in three (and higher) dimensions. Since not all structures can be decomposed into simpler objects like d-dimensional rectangular blocks, simplicial partitions are important. In this book an emphasis is placed on angle conditions guaranteeing the convergence of the finite element method for elliptic PDEs with given boundary conditions. It is aimed at a general mathematical audience who is assumed to be familiar with only a few basic results from linear algebra, geometry, and mathematical and numerical analysis.

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