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Tensors for physics

This book presents the science of tensors in a didactic way. The various types and ranks of tensors and the physical basis is presented. Cartesian Tensors are needed for the description of directional phenomena in many branches of physics and for the characterization the anisotropy of material prope...

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Detalles Bibliográficos
Autor principal: Hess, Siegfried
Lenguaje:eng
Publicado: Springer 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-12787-3
http://cds.cern.ch/record/2015400
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author Hess, Siegfried
author_facet Hess, Siegfried
author_sort Hess, Siegfried
collection CERN
description This book presents the science of tensors in a didactic way. The various types and ranks of tensors and the physical basis is presented. Cartesian Tensors are needed for the description of directional phenomena in many branches of physics and for the characterization the anisotropy of material properties. The first sections of the book provide an introduction to the vector and tensor algebra and analysis, with applications to physics,  at undergraduate level. Second rank tensors, in particular their symmetries, are discussed in detail. Differentiation and integration of fields, including generalizations of the Stokes law and the Gauss theorem, are treated. The physics relevant for the applications in mechanics, quantum mechanics, electrodynamics and hydrodynamics is presented. The second part of the book is devoted to  tensors of any rank, at graduate level.  Special topics are irreducible, i.e. symmetric traceless tensors, isotropic tensors, multipole potential tensors, spin tensors, integration and spin-trace formulas, coupling of irreducible tensors, rotation of tensors. Constitutive laws for optical, elastic and viscous properties of anisotropic media are dealt with.  The anisotropic media include crystals, liquid crystals and isotropic fluids, rendered anisotropic  by external orienting fields. The dynamics of tensors deals with phenomena of current research.  In the last section,  the 3D Maxwell equations are reformulated in their 4D version,  in accord with special relativity.
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spelling cern-20154002021-04-21T20:18:59Zdoi:10.1007/978-3-319-12787-3http://cds.cern.ch/record/2015400engHess, SiegfriedTensors for physicsGeneral Theoretical PhysicsThis book presents the science of tensors in a didactic way. The various types and ranks of tensors and the physical basis is presented. Cartesian Tensors are needed for the description of directional phenomena in many branches of physics and for the characterization the anisotropy of material properties. The first sections of the book provide an introduction to the vector and tensor algebra and analysis, with applications to physics,  at undergraduate level. Second rank tensors, in particular their symmetries, are discussed in detail. Differentiation and integration of fields, including generalizations of the Stokes law and the Gauss theorem, are treated. The physics relevant for the applications in mechanics, quantum mechanics, electrodynamics and hydrodynamics is presented. The second part of the book is devoted to  tensors of any rank, at graduate level.  Special topics are irreducible, i.e. symmetric traceless tensors, isotropic tensors, multipole potential tensors, spin tensors, integration and spin-trace formulas, coupling of irreducible tensors, rotation of tensors. Constitutive laws for optical, elastic and viscous properties of anisotropic media are dealt with.  The anisotropic media include crystals, liquid crystals and isotropic fluids, rendered anisotropic  by external orienting fields. The dynamics of tensors deals with phenomena of current research.  In the last section,  the 3D Maxwell equations are reformulated in their 4D version,  in accord with special relativity.Springeroai:cds.cern.ch:20154002015
spellingShingle General Theoretical Physics
Hess, Siegfried
Tensors for physics
title Tensors for physics
title_full Tensors for physics
title_fullStr Tensors for physics
title_full_unstemmed Tensors for physics
title_short Tensors for physics
title_sort tensors for physics
topic General Theoretical Physics
url https://dx.doi.org/10.1007/978-3-319-12787-3
http://cds.cern.ch/record/2015400
work_keys_str_mv AT hesssiegfried tensorsforphysics