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The Theory of Cubature Formulas (Paperback, Softcover reprint of hardcover 1st ed. 1997): S.L. Sobolev, Vladimir L. Vaskevich The Theory of Cubature Formulas (Paperback, Softcover reprint of hardcover 1st ed. 1997)
S.L. Sobolev, Vladimir L. Vaskevich
R3,009 Discovery Miles 30 090 Ships in 10 - 15 working days

This volume considers various methods for constructing cubature and quadrature formulas of arbitrary degree. These formulas are intended to approximate the calculation of multiple and conventional integrals over a bounded domain of integration. The latter is assumed to have a piecewise-smooth boundary and to be arbitrary in other aspects. Particular emphasis is placed on invariant cubature formulas and those for a cube, a simplex, and other polyhedra. Here, the techniques of functional analysis and partial differential equations are applied to the classical problem of numerical integration, to establish many important and deep analytical properties of cubature formulas. The prerequisites of the theory of many-dimensional discrete function spaces and the theory of finite differences are concisely presented. Special attention is paid to constructing and studying the optimal cubature formulas in Sobolev spaces. As an asymptotically optimal sequence of cubature formulas, a many-dimensional abstraction of the Gregory quadrature is indicated. Audience: This book is intended for researchers having a basic knowledge of functional analysis who are interested in the applications of modern theoretical methods to numerical mathematics.

Selected Works of S.L. Sobolev - Volume I: Equations of Mathematical Physics, Computational Mathematics, and Cubature Formulas... Selected Works of S.L. Sobolev - Volume I: Equations of Mathematical Physics, Computational Mathematics, and Cubature Formulas (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Gennadii V. Demidenko, Vladimir L. Vaskevich
R4,591 Discovery Miles 45 910 Ships in 10 - 15 working days

The topics covered in this volume include Sobolev 's fundamental works on equations of mathematical physics, computational mathematics, and cubature formulas. Some of the articles are generally unknown to mathematicians because they were published in journals that are difficult to access. This is the first appearance in English of many works by this important Russian mathematician.

Selected Works of S.L. Sobolev - Volume I: Equations of Mathematical Physics, Computational Mathematics, and Cubature Formulas... Selected Works of S.L. Sobolev - Volume I: Equations of Mathematical Physics, Computational Mathematics, and Cubature Formulas (Hardcover)
Gennadii V. Demidenko, Vladimir L. Vaskevich
R4,883 Discovery Miles 48 830 Ships in 10 - 15 working days

S.L. Sobolev (1908-1989) was a great mathematician of the twentieth century. His selected works included in this volume laid the foundations for intensive development of the modern theory of partial differential equations and equations of mathematical physics, and they were a gold mine for new directions of functional analysis and computational mathematics. The topics covered in this volume includes Sobolev's fundamental works on equations of mathematical physics, computational mathematics, and cubature formulas. Some of the articles are generally unknown to mathematicians because they were published in journals that are difficult to access.

The Theory of Cubature Formulas (Hardcover, 1997 ed.): S.L. Sobolev, Vladimir L. Vaskevich The Theory of Cubature Formulas (Hardcover, 1997 ed.)
S.L. Sobolev, Vladimir L. Vaskevich
R3,036 Discovery Miles 30 360 Ships in 10 - 15 working days

This volume considers various methods for constructing cubature and quadrature formulas of arbitrary degree. These formulas are intended to approximate the calculation of multiple and conventional integrals over a bounded domain of integration. The latter is assumed to have a piecewise-smooth boundary and to be arbitrary in other aspects. Particular emphasis is placed on invariant cubature formulas and those for a cube, a simplex, and other polyhedra. Here, the techniques of functional analysis and partial differential equations are applied to the classical problem of numerical integration, to establish many important and deep analytical properties of cubature formulas. The prerequisites of the theory of many-dimensional discrete function spaces and the theory of finite differences are concisely presented. Special attention is paid to constructing and studying the optimal cubature formulas in Sobolev spaces. As an asymptotically optimal sequence of cubature formulas, a many-dimensional abstraction of the Gregory quadrature is indicated. Audience: This book is intended for researchers having a basic knowledge of functional analysis who are interested in the applications of modern theoretical methods to numerical mathematics.

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