Matrices, Moments and Quadrature with Applications

Matrices, Moments and Quadrature with Applications
Title Matrices, Moments and Quadrature with Applications PDF eBook
Author Gene H. Golub
Publisher Princeton University Press
Pages 376
Release 2009-12-07
Genre Mathematics
ISBN 1400833884

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This computationally oriented book describes and explains the mathematical relationships among matrices, moments, orthogonal polynomials, quadrature rules, and the Lanczos and conjugate gradient algorithms. The book bridges different mathematical areas to obtain algorithms to estimate bilinear forms involving two vectors and a function of the matrix. The first part of the book provides the necessary mathematical background and explains the theory. The second part describes the applications and gives numerical examples of the algorithms and techniques developed in the first part. Applications addressed in the book include computing elements of functions of matrices; obtaining estimates of the error norm in iterative methods for solving linear systems and computing parameters in least squares and total least squares; and solving ill-posed problems using Tikhonov regularization. This book will interest researchers in numerical linear algebra and matrix computations, as well as scientists and engineers working on problems involving computation of bilinear forms.

Matrices, Moments and Quadrature: Applications to Time- Dependent Partial Differential Equations

Matrices, Moments and Quadrature: Applications to Time- Dependent Partial Differential Equations
Title Matrices, Moments and Quadrature: Applications to Time- Dependent Partial Differential Equations PDF eBook
Author James V. Lambers
Publisher
Pages
Release 2016
Genre Mathematics
ISBN

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The numerical solution of a time-dependent PDE generally involves the solution of a stiff system of ODEs arising from spatial discretization of the PDE. There are many methods in the literature for solving such systems, such as exponential propagation iterative (EPI) methods, that rely on Krylov projection to compute matrix function-vector products. Unfortunately, as spatial resolution increases, these products require an increasing number of Krylov projection steps, thus drastically increasing computational expense.

Matrices, Moments and Quadrature

Matrices, Moments and Quadrature
Title Matrices, Moments and Quadrature PDF eBook
Author Stanford University. Computer Science Department. Scientific Computing and Computational Mathematics Program
Publisher
Pages 52
Release 1994
Genre
ISBN

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Matrices, Moments and Quadrature II, Or, How to Compute the Norm of the Error in Iterative Methods

Matrices, Moments and Quadrature II, Or, How to Compute the Norm of the Error in Iterative Methods
Title Matrices, Moments and Quadrature II, Or, How to Compute the Norm of the Error in Iterative Methods PDF eBook
Author Stanford University. Computer Science Department. Scientific Computing and Computational Mathematics Program
Publisher
Pages
Release 1996
Genre
ISBN

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Applied Linear Algebra in Action

Applied Linear Algebra in Action
Title Applied Linear Algebra in Action PDF eBook
Author Vasilios Katsikis
Publisher BoD – Books on Demand
Pages 175
Release 2016-07-06
Genre Mathematics
ISBN 9535124196

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The present text book contains a collection of six high-quality articles. In particular, this book is devoted to Linear Mathematics by presenting problems in Applied Linear Algebra of general or special interest.

Matrix Completions, Moments, and Sums of Hermitian Squares

Matrix Completions, Moments, and Sums of Hermitian Squares
Title Matrix Completions, Moments, and Sums of Hermitian Squares PDF eBook
Author Mihály Bakonyi
Publisher Princeton University Press
Pages 533
Release 2011-07-18
Genre Mathematics
ISBN 1400840597

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Intensive research in matrix completions, moments, and sums of Hermitian squares has yielded a multitude of results in recent decades. This book provides a comprehensive account of this quickly developing area of mathematics and applications and gives complete proofs of many recently solved problems. With MATLAB codes and more than 200 exercises, the book is ideal for a special topics course for graduate or advanced undergraduate students in mathematics or engineering, and will also be a valuable resource for researchers. Often driven by questions from signal processing, control theory, and quantum information, the subject of this book has inspired mathematicians from many subdisciplines, including linear algebra, operator theory, measure theory, and complex function theory. In turn, the applications are being pursued by researchers in areas such as electrical engineering, computer science, and physics. The book is self-contained, has many examples, and for the most part requires only a basic background in undergraduate mathematics, primarily linear algebra and some complex analysis. The book also includes an extensive discussion of the literature, with close to 600 references from books and journals from a wide variety of disciplines.

Exploiting Hidden Structure in Matrix Computations: Algorithms and Applications

Exploiting Hidden Structure in Matrix Computations: Algorithms and Applications
Title Exploiting Hidden Structure in Matrix Computations: Algorithms and Applications PDF eBook
Author Michele Benzi
Publisher Springer
Pages 413
Release 2017-01-24
Genre Mathematics
ISBN 3319498878

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Focusing on special matrices and matrices which are in some sense `near’ to structured matrices, this volume covers a broad range of topics of current interest in numerical linear algebra. Exploitation of these less obvious structural properties can be of great importance in the design of efficient numerical methods, for example algorithms for matrices with low-rank block structure, matrices with decay, and structured tensor computations. Applications range from quantum chemistry to queuing theory. Structured matrices arise frequently in applications. Examples include banded and sparse matrices, Toeplitz-type matrices, and matrices with semi-separable or quasi-separable structure, as well as Hamiltonian and symplectic matrices. The associated literature is enormous, and many efficient algorithms have been developed for solving problems involving such matrices. The text arose from a C.I.M.E. course held in Cetraro (Italy) in June 2015 which aimed to present this fast growing field to young researchers, exploiting the expertise of five leading lecturers with different theoretical and application perspectives.