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Fourier series, Fourier transform and their applications to mathematical physics

Author: Valery Serov
Publisher: Cham : Springer, 2017.
Series: Applied mathematical sciences (Springer-Verlag New York Inc.), v. 197.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This text serves as an introduction to the modern theory of analysis and differential equations with applications in mathematical physics and engineering sciences. Having outgrown from a series of half-semester courses given at University of Oulu, this book consists of four self-contained parts. The first part, Fourier Series and the Discrete Fourier Transform, is devoted to the classical one-dimensional  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
(OCoLC)994639392
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Valery Serov
ISBN: 9783319652627 3319652621 9783319652634 331965263X 9783319879857 3319879855
OCLC Number: 1013821187
Description: 1 online resource
Contents: Part I: Fourier Series and the Discrete Fourier Transform --
Introduction --
Formulation of Fourier Series --
Fourier Coefficients and their Properties --
Convolution and Parseval Equality --
Fejer Means of Fourier Series: Uniqueness of the Fourier Series --
Riemann-Lebesgue Lemma --
Fourier Series of Square-Integrable Function: Riesz-Fischer Theorem --
Besov and Holder Spaces --
Absolute Convergence: Bernstein and Peetre Theorems --
Dirichlet Kernel: Pointwise and Uniform Congergence --
Formulation of Discrete Fourier Transform and its Properties --
Connection Between the Discrete Fourier Transform and the Fourier Transform --
Some Applications of Discrete Fourier Transform --
Applications to Solving Some Model Equations --
Part II: Fourier Transform and Distributions --
Introduction --
Fourier Transform in Schwartz Space --
Fourier Transform inLp(Rn);1 p 2 --
Tempered Distributions --
Convolutions in S and S^1 --
Sobolev Spaces --
Homogeneous Distributions --
Fundamental Solution of the Helmholtz Operator --
Estimates for Laplacian and Hamiltonian --
Part III: Operator Theory and Integral Equations --
Introduction --
Inner Product Spaces and Hilbert Spaces --
Symmetric Operators in Hilbert Spaces --
J. von Neumann's Spectral Theorem --
Spectrum of Self-Adjoint Operators --
Quadratic Forms: Freidrich's Extension --
Elliptic Differential Operators --
Spectral Function --
Schrodinger Operator --
Magnetic Schrodinger Operator --
Integral Operators with Weak Singularities: Integral Equations of the First and Second Kind --
Volterra and Singular Integral Equations --
Approximate Methods --
Part IV: Partial Differential Equations --
Introduction --
Local Existence Theory --
The Laplace Operator --
The Dirichlet and Neumman Problems --
Layer Potentials --
Elliptic Boundary Value Problems --
Direct Scattering Problem for Helmholtz Equation --
Some Inverse Scattering Problems for the Schrodinger Operator --
The Heat Operator --
The Wave Operator.
Series Title: Applied mathematical sciences (Springer-Verlag New York Inc.), v. 197.
Responsibility: Valery Serov.

Abstract:

The fourth and final part, Introduction to Partial Differential Equations, serves as an introduction to modern methods for classical theory of partial differential equations. Complete with nearly  Read more...

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"This book is an introduction to the modern theory of harmonic analysis and differential equations. ... the book would be useful for graduate students as well as for researchers who look for Read more...

 
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