Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /

Four lectures lead the reader from basic numerical methods for solving hyperbolic partial differential equations to the application of complex simulation codes to selected astrophysical problems. The text highlights the powerful capabilities, the use, and the pitfalls of computational astrophysics. Difficult topics pertaining to astrophysical problem solving, such as gravitation, magnetic fields, reactive flow, and relativity, are addressed. Two lectures are devoted to radiation hydrodynamics. They treat the derivation of the basic equations and numerical methods. This book will be useful to students and researchers in astrophysics and applied mathematics.

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Bibliographic Details
Main Authors: LeVeque, R. J. author., Mihalas, D. author., Dorfi, E. A. author., Müller, E. author., Steiner, O. editor., Gautschy, A. editor., SpringerLink (Online service)
Format: Texto biblioteca
Language:eng
Published: Berlin, Heidelberg : Springer Berlin Heidelberg, 1998
Subjects:Physics., Earth sciences., Geophysics., Computer mathematics., Astrophysics., Astrophysics and Astroparticles., Numerical and Computational Physics., Computational Mathematics and Numerical Analysis., Earth Sciences, general., Geophysics/Geodesy.,
Online Access:http://dx.doi.org/10.1007/3-540-31632-9
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record_format koha
spelling KOHA-OAI-TEST:2230612018-07-31T00:01:54ZComputational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy / LeVeque, R. J. author. Mihalas, D. author. Dorfi, E. A. author. Müller, E. author. Steiner, O. editor. Gautschy, A. editor. SpringerLink (Online service) textBerlin, Heidelberg : Springer Berlin Heidelberg,1998.engFour lectures lead the reader from basic numerical methods for solving hyperbolic partial differential equations to the application of complex simulation codes to selected astrophysical problems. The text highlights the powerful capabilities, the use, and the pitfalls of computational astrophysics. Difficult topics pertaining to astrophysical problem solving, such as gravitation, magnetic fields, reactive flow, and relativity, are addressed. Two lectures are devoted to radiation hydrodynamics. They treat the derivation of the basic equations and numerical methods. This book will be useful to students and researchers in astrophysics and applied mathematics.Nonlinear Conservation Laws and Finite Volume Methods -- Radiation Hydrodynamics -- Radiation Hydrodynamics: Numerical Aspects and Applications -- Simulation of Astrophysical Fluid Flow.Four lectures lead the reader from basic numerical methods for solving hyperbolic partial differential equations to the application of complex simulation codes to selected astrophysical problems. The text highlights the powerful capabilities, the use, and the pitfalls of computational astrophysics. Difficult topics pertaining to astrophysical problem solving, such as gravitation, magnetic fields, reactive flow, and relativity, are addressed. Two lectures are devoted to radiation hydrodynamics. They treat the derivation of the basic equations and numerical methods. This book will be useful to students and researchers in astrophysics and applied mathematics.Physics.Earth sciences.Geophysics.Computer mathematics.Astrophysics.Physics.Astrophysics and Astroparticles.Numerical and Computational Physics.Computational Mathematics and Numerical Analysis.Earth Sciences, general.Geophysics/Geodesy.Springer eBookshttp://dx.doi.org/10.1007/3-540-31632-9URN:ISBN:9783540316329
institution COLPOS
collection Koha
country México
countrycode MX
component Bibliográfico
access En linea
En linea
databasecode cat-colpos
tag biblioteca
region America del Norte
libraryname Departamento de documentación y biblioteca de COLPOS
language eng
topic Physics.
Earth sciences.
Geophysics.
Computer mathematics.
Astrophysics.
Physics.
Astrophysics and Astroparticles.
Numerical and Computational Physics.
Computational Mathematics and Numerical Analysis.
Earth Sciences, general.
Geophysics/Geodesy.
Physics.
Earth sciences.
Geophysics.
Computer mathematics.
Astrophysics.
Physics.
Astrophysics and Astroparticles.
Numerical and Computational Physics.
Computational Mathematics and Numerical Analysis.
Earth Sciences, general.
Geophysics/Geodesy.
spellingShingle Physics.
Earth sciences.
Geophysics.
Computer mathematics.
Astrophysics.
Physics.
Astrophysics and Astroparticles.
Numerical and Computational Physics.
Computational Mathematics and Numerical Analysis.
Earth Sciences, general.
Geophysics/Geodesy.
Physics.
Earth sciences.
Geophysics.
Computer mathematics.
Astrophysics.
Physics.
Astrophysics and Astroparticles.
Numerical and Computational Physics.
Computational Mathematics and Numerical Analysis.
Earth Sciences, general.
Geophysics/Geodesy.
LeVeque, R. J. author.
Mihalas, D. author.
Dorfi, E. A. author.
Müller, E. author.
Steiner, O. editor.
Gautschy, A. editor.
SpringerLink (Online service)
Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
description Four lectures lead the reader from basic numerical methods for solving hyperbolic partial differential equations to the application of complex simulation codes to selected astrophysical problems. The text highlights the powerful capabilities, the use, and the pitfalls of computational astrophysics. Difficult topics pertaining to astrophysical problem solving, such as gravitation, magnetic fields, reactive flow, and relativity, are addressed. Two lectures are devoted to radiation hydrodynamics. They treat the derivation of the basic equations and numerical methods. This book will be useful to students and researchers in astrophysics and applied mathematics.
format Texto
topic_facet Physics.
Earth sciences.
Geophysics.
Computer mathematics.
Astrophysics.
Physics.
Astrophysics and Astroparticles.
Numerical and Computational Physics.
Computational Mathematics and Numerical Analysis.
Earth Sciences, general.
Geophysics/Geodesy.
author LeVeque, R. J. author.
Mihalas, D. author.
Dorfi, E. A. author.
Müller, E. author.
Steiner, O. editor.
Gautschy, A. editor.
SpringerLink (Online service)
author_facet LeVeque, R. J. author.
Mihalas, D. author.
Dorfi, E. A. author.
Müller, E. author.
Steiner, O. editor.
Gautschy, A. editor.
SpringerLink (Online service)
author_sort LeVeque, R. J. author.
title Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
title_short Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
title_full Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
title_fullStr Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
title_full_unstemmed Computational Methods for Astrophysical Fluid Flow [electronic resource] : Saas-Fee Advanced Course 27 Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy /
title_sort computational methods for astrophysical fluid flow [electronic resource] : saas-fee advanced course 27 lecture notes 1997 swiss society for astrophysics and astronomy /
publisher Berlin, Heidelberg : Springer Berlin Heidelberg,
publishDate 1998
url http://dx.doi.org/10.1007/3-540-31632-9
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