Periodic Integral and Pseudodifferential Equations with Numerical Approximation / by Jukka Saranen, Gennadi Vainikko.

Classical boundary integral equations arising from the potential theory and acoustics (Laplace and Helmholtz equations) are derived. Using the parametrization of the boundary these equations take a form of periodic pseudodifferential equations. A general theory of periodic pseudodifferential equatio...

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Bibliographic Details
Online Access: Full Text (via Springer)
Main Author: Saranen, J. (Jukka)
Other Authors: Vainikko, Gennadi
Format: eBook
Language:English
Published: Berlin, Heidelberg : Springer Berlin Heidelberg, 2002.
Series:Springer monographs in mathematics.
Subjects:

MARC

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245 1 0 |a Periodic Integral and Pseudodifferential Equations with Numerical Approximation /  |c by Jukka Saranen, Gennadi Vainikko. 
260 |a Berlin, Heidelberg :  |b Springer Berlin Heidelberg,  |c 2002. 
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490 1 |a Springer Monographs in Mathematics,  |x 1439-7382. 
505 0 |a 1 Preliminaries -- 2 Single Layer and Double Layer Potentials -- 3 Solution of Boundary Value Problems by Integral Equations -- 4 Singular Integral Equations -- 5 Boundary Integral Operators in Periodic Sobolev Spaces -- 6 Periodic Integral Equations -- 7 Periodic Pseudodifferential Operators -- 8 Trigonometric Interpolation -- 9 Galerkin Method and Fast Solvers -- 10 Trigonometric Collocation -- 11 Integral Equations on an Open Arc -- 12 Quadrature Methods -- 13 Spline Approximation Methods. 
520 |a Classical boundary integral equations arising from the potential theory and acoustics (Laplace and Helmholtz equations) are derived. Using the parametrization of the boundary these equations take a form of periodic pseudodifferential equations. A general theory of periodic pseudodifferential equations and methods of solving are developed, including trigonometric Galerkin and collocation methods, their fully discrete versions with fast solvers, quadrature and spline based methods. The theory of periodic pseudodifferential operators is presented in details, with preliminaries (Fredholm operators, periodic distributions, periodic Sobolev spaces) and full proofs. This self-contained monograph can be used as a textbook by graduate/postgraduate students. It also contains a lot of carefully chosen exercises. 
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