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The Method of Differential Approximation, Y.I. Shokin; K.G. Roesner


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Автор: Y.I. Shokin; K.G. Roesner
Название:  The Method of Differential Approximation
ISBN: 9783642689857
Издательство: Springer
Классификация:
ISBN-10: 364268985X
Обложка/Формат: Paperback
Страницы: 298
Вес: 0.44 кг.
Дата издания: 21.12.2011
Серия: Scientific Computation
Язык: English
Размер: 234 x 156 x 17
Основная тема: Physics
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: The treatment of the approximation of gas dynamic equations focuses on the question of how to characterize the typical features of difference equations on the basis of the related differential approximation, which can be discussed using the fully developed theory of partial differential equations.


Structure and Approximation in Physical Theories

Автор: A. Hartkamper
Название: Structure and Approximation in Physical Theories
ISBN: 1468441116 ISBN-13(EAN): 9781468441116
Издательство: Springer
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Цена: 6986.00 р.
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Описание: The present volume contains 14 contributions presented at a colloquium on "Structure and Approximation in Physical Theories" held at Osnabruck in June 1980.

Partial Differential Equations

Автор: Jost Jurgen
Название: Partial Differential Equations
ISBN: 1461448085 ISBN-13(EAN): 9781461448082
Издательство: Springer
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Цена: 10480.00 р.
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Описание: This extensively revised and updated new edition of a core text on partial differential equations features clear and systematic discussion of the relations between different types of PDEs. It covers new Hamack-type techniques, Schauder estimates, and more.

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: 9781.00 р.
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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

The Gaussian Approximation Potential

Автор: Albert Bart?k-P?rtay
Название: The Gaussian Approximation Potential
ISBN: 3642264263 ISBN-13(EAN): 9783642264269
Издательство: Springer
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Цена: 16769.00 р.
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Описание: The framework of Gaussian Approximation Potentials developed in this thesis allows us to generate interatomic potentials automatically, based on quantum mechanical data. The method has already been successfully applied to semiconductors and metals.

Numerical Approximation Methods

Автор: Harold Cohen
Название: Numerical Approximation Methods
ISBN: 148999159X ISBN-13(EAN): 9781489991591
Издательство: Springer
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Цена: 10480.00 р.
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Описание: This book presents numerical and other approximation techniques for solving various types of mathematical problems that cannot be solved analytically. In addition to well known methods, it contains some non-standard approximation techniques.

Meshfree Methods for Partial Differential Equations VI

Автор: Michael Griebel; Marc Alexander Schweitzer
Название: Meshfree Methods for Partial Differential Equations VI
ISBN: 3642429777 ISBN-13(EAN): 9783642429774
Издательство: Springer
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Цена: 19564.00 р.
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Описание: Meshfree methods are a modern alternative to classical mesh-based discretization techniques such as finite differences or finite element methods. This volume collects selected papers presented at the Sixth International Workshop on Meshfree Methods held in Bonn, Germany in October 2011.

Asymptotic Solutions of Strongly Nonlinear Systems of Differential Equations

Автор: Valery V. Kozlov; Stanislav D. Furta; Lester Senec
Название: Asymptotic Solutions of Strongly Nonlinear Systems of Differential Equations
ISBN: 3642432409 ISBN-13(EAN): 9783642432408
Издательство: Springer
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Описание: With a pedagogic format ideal for graduate students, this text includes a wealth of examples focusing on solutions in dynamical systems theory that mirror those used in Lyapunov`s first method, tackling ordinary differential equations expressed as series form.

From Particle Systems to Partial Differential Equations

Автор: C?dric Bernardin; Patricia Gon?alves
Название: From Particle Systems to Partial Differential Equations
ISBN: 3662512408 ISBN-13(EAN): 9783662512401
Издательство: Springer
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Описание:

This book presents the proceedings of the international conference Particle Systems and Partial Differential Equations I, which took place at the Centre of Mathematics of the University of Minho, Braga, Portugal, from the 5th to the 7th of December, 2012.

The purpose of the conference was to bring together world leaders to discuss their topics of expertise and to present some of their latest research developments in those fields. Among the participants were researchers in probability, partial differential equations and kinetics theory. The aim of the meeting was to present to a varied public the subject of interacting particle systems, its motivation from the viewpoint of physics and its relation with partial differential equations or kinetics theory and to stimulate discussions and possibly new collaborations among researchers with different backgrounds.

The book contains lecture notes written by Fran ois Golse on the derivation of hydrodynamic equations (compressible and incompressible Euler and Navier-Stokes) from the Boltzmann equation, and several short papers written by some of the participants in the conference. Among the topics covered by the short papers are hydrodynamic limits; fluctuations; phase transitions; motions of shocks and anti shocks in exclusion processes; large number asymptotics for systems with self-consistent coupling; quasi-variational inequalities; unique continuation properties for PDEs and others.

The book will benefit probabilists, analysts and mathematicians who are interested in statistical physics, stochastic processes, partial differential equations and kinetics theory, along with physicists.

Differential Equations: Theory and Applications

Автор: David Betounes
Название: Differential Equations: Theory and Applications
ISBN: 1489982655 ISBN-13(EAN): 9781489982650
Издательство: Springer
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Цена: 9077.00 р.
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Описание: This book provides a comprehensive introduction to the theory of ordinary differential equations with a focus on mechanics and dynamical systems as important applications of the theory. It also features a complete collection of proofs for the major theorems.

From Particle Systems to Partial Differential Equations

Автор: Patr?cia Gon?alves; Ana Jacinta Soares
Название: From Particle Systems to Partial Differential Equations
ISBN: 3319668382 ISBN-13(EAN): 9783319668383
Издательство: Springer
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Цена: 22359.00 р.
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Описание:

"This book addresses mathematical problems motivated by various applications in physics, engineering, chemistry and biology. It gathers the lecture notes from the mini-course presented by Jean-Christophe Mourrat on the construction of the various stochastic "basic" terms involved in the formulation of the dynamic O4 theory in three space dimensions, as well as selected contributions presented at the fourth meeting on Particle Systems and PDEs, which was held at the University of Minho's Centre of Mathematics in December 2015. The purpose of the conference was to bring together prominent researchers working in the fields of particle systems and partial differential equations, offering them a forum to present their recent results and discuss their topics of expertise. The meeting was also intended to present to a vast and varied public, including young researchers, the area of interacting particle systems, its underlying motivation, and its relation to partial differential equations.

The book will be of great interest to probabilists, analysts, and all mathematicians whose work focuses on topics in mathematical physics, stochastic processes and differential equations in general, as well as physicists working in statistical mechanics and kinetic theory."

Stochastic Calculus and Differential Equations for Physics and Finance

Автор: Joseph L. McCauley
Название: Stochastic Calculus and Differential Equations for Physics and Finance
ISBN: 0521763401 ISBN-13(EAN): 9780521763400
Издательство: Cambridge Academ
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Цена: 19800.00 р.
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Описание: Stochastic calculus provides a powerful description of a specific class of stochastic processes in physics and finance. However, many econophysicists struggle to understand it. This book presents the subject simply and systematically, giving graduate students and practitioners a better understanding and enabling them to apply the methods in practice.

Developments in Partial Differential Equations and Applications to Mathematical Physics

Автор: G. Buttazzo; Giselle Galdi; L. Zanghirati
Название: Developments in Partial Differential Equations and Applications to Mathematical Physics
ISBN: 1461363225 ISBN-13(EAN): 9781461363224
Издательство: Springer
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Цена: 13974.00 р.
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