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An Introduction to Inverse Scattering and Inverse Spectral Methods, Khosrow Chadan, David Colton, Lassi P?iv?rinta, Wi


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Автор: Khosrow Chadan, David Colton, Lassi P?iv?rinta, Wi
Название:  An Introduction to Inverse Scattering and Inverse Spectral Methods
ISBN: 9780898713879
Издательство: Mare Nostrum (Eurospan)
Классификация:

ISBN-10: 0898713870
Обложка/Формат: Paperback
Страницы: 208
Вес: 0.37 кг.
Дата издания: 1997-07-31
Серия: Mathematical modeling and computation
Язык: English
Иллюстрации: Illustrations
Размер: 229 x 152 x 12
Читательская аудитория: Tertiary education (us: college)
Основная тема: Mathematical modelling
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Поставляется из: Англии
Описание: Inverse problems attempt to obtain information about structures by non-destructive measurements. This introduction to inverse problems covers three central areas: inverse problems in electromagnetic scattering theory; inverse spectral theory; and inverse problems in quantum scattering theory.

Introduction to inverse problems in imaging

Автор: Bertero, Mario Boccaci, Patrizia Boccacci, P.
Название: Introduction to inverse problems in imaging
ISBN: 0750304359 ISBN-13(EAN): 9780750304351
Издательство: Taylor&Francis
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Цена: 70430.00 T
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Описание: A textbook on the principles of linear inverse problems, methods of their approximate solution, and practical application in imaging. It presents easily implementable and fast solution algorithms. It provides the reader with the background for an understanding of the essence of inverse problems (ill-posedness and its cure).

Introduction to the mathematical theory of inverse problems

Автор: Kirsch, Andreas
Название: Introduction to the mathematical theory of inverse problems
ISBN: 1461428513 ISBN-13(EAN): 9781461428510
Издательство: Springer
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Цена: 74490.00 T
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Описание: This book introduces the area of inverse problems. It examines basic notions and difficulties encountered with ill-posed problems and presents two special nonlinear inverse problems in detail: the inverse spectral problem and the inverse scattering problem.

Автор: Ablowi
Название: Solitons And The Inverse Scattering Transform
ISBN: 0898711746 ISBN-13(EAN): 9780898711745
Издательство: Mare Nostrum (Eurospan)
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Цена: 102830.00 T
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Описание: A study of the inverse scattering transform and its application to problems of nonlinear dispersive waves that arise in fluid dynamics, plasma physics, nonlinear optics, particle physics, crystal lattice theory, nonlinear circuit theory and other areas.

Geometric Methods in Inverse Problems and PDE Control

Автор: Chrisopher B. Croke; Gunther Uhlmann; Irena Lasiec
Название: Geometric Methods in Inverse Problems and PDE Control
ISBN: 1441923411 ISBN-13(EAN): 9781441923417
Издательство: Springer
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Цена: 163040.00 T
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Описание: This IMA Volume in Mathematics and its Applications GEOMETRIC METHODS IN INVERSE PROBLEMS AND PDE CONTROL contains a selection of articles presented at 2001 IMA Summer Program with the same title.

Introduction to Spectral Theory

Автор: Hislop
Название: Introduction to Spectral Theory
ISBN: 0387945016 ISBN-13(EAN): 9780387945019
Издательство: Springer
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Цена: 158380.00 T
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Описание: This work aims to introduce students to active areas of research in mathematical physics in a rather direct way, thus minimizing the use of abstract mathematics. The book`s main features are geometric methods in spectral analysis, semi-classical analysis of resonance and other topics.

Introduction to methods of approximation in physics and astronomy

Автор: Van Putten, Maurice H. P. M.
Название: Introduction to methods of approximation in physics and astronomy
ISBN: 9811029318 ISBN-13(EAN): 9789811029318
Издательство: Springer
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Цена: 65210.00 T
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Описание:

Preface

Part I Preliminaries

1. Complex numbers

1.1 Quotients of complex numbers

1.2 Roots of complex numbers

1.3 Sequences and Euler's constant

1.4 Power series and radius of convergence

1.5 Minkowski spacetime

1.6 The logarithm and winding number

1.7 Branch cuts for z

1.8 Branch cuts for z 1/p

1.9 Exercises

2. Complex function theory

2.1 Analytic functions

2.2 Cauchy's Integral Formula

2.3 Evaluation of a real integral

2.4 Residue theorem

2.5 Morera's theorem

2.6 Liouville's theorem

2.7 Poisson kernel

2.8 Flux and circulation

2.9 Examples of potential flows

2.10Exercises

3. Vectors and linear algebra

3.1 Introduction

3.2 Inner and outer products

3.3 Angular momentum vector

3.4 Elementary transformations in the plane

3.5 Matrix algebra

3.6 Eigenvalue problems

3.7 Unitary matrices and invariants

3.8 Hermitian structure of Minkowski spacetime

3.9 Eigenvectors of Hermitian matrices

3.10QR factorization

3.11Exercises

4. Linear partial differential equations

4.1 Hyperbolic equations

4.2 Diffusion equation

4.3 Elliptic equations

4.4 Characteristic of hyperbolic systems

4.5 Weyl equation

4.6 Exercises

Part II Methods of approximation

5. Projections and minimal distances

5.1 Vectors and distances

5.2 Projections of vectors

5.3 Snell's law and Fermat's principle

5.4 Fitting data by least squares

5.5 Gauss-Legendre quadrature

5.6 Exercises

6. Spectral methods and signal analysis

6.1 Basis functions

6.2 Expansion in Legendre polynomials 6.3 Fourier expansion

6.4 The Fourier transform

6.5 Fourier series

6.6 Chebychev polynomials

6.7 Weierstrass approximation theorem

6.8 Detector signals in the presence of noise

6.9 Signal detection by FFT using Maxima

6.10GPU-Butterfly filter in (f, f)

6.11Exercises

7. Root finding

7.1 Solving for √2 and π
7.2 Convergence in Newton's method

7.3 Contraction mapping

7.4 Newton's method in two dimensions

7.5 Basins of attraction

7.6 Root finding in higher dimensions

7.7 Exercises

8. Finite differencing: differentiation and integration

8.1 Vector fields

8.2 Gradient operator

8.3 Integration of ODE's

8.4 Numerical integration of ODE's

8.5 Examples of ordinary differential equations

8.6 Exercises

9. Perturbation theory, scaling and turbulence

9.1 Roots of a cubic equation

9.2 Damped pendulum

9.3 Orbital motion

9.4 Inertial and viscous fluid motion

9.5 Kolmogorov scaling of homogeneous turbulence

9.6 Exercises

Part III Selected topics

10. Thermodynamics of N-body systems

10.1 The action principle

10.2 Momentum in Euler-Lagragne equations

10.3 Legendre transformation

10.4 Hamiltonian formulation

10.5 Globular clusters

10.6 Coefficients of relaxation

10.7 Exercises

11. Accretion flows onto black holes

11.1 Bondi accretioin

11.2 Hoyle-Lyttleton accretion

11.3 Accretion disks

11.4 Gravitational wave emission

11.5 Mass transfer in binaries

11.6 Exercises

12. Rindler observers in astrophysics and cosmology

12.1 The moving mirror problem

12.2 Implications for dark matter

12.3 Exercises

A. Some units and consta


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