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Lie Theory and Its Applications in Physics: IX International Workshop
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Catalogue Information
Field name
Details
Dewey Class
512
Title
Lie Theory and Its Applications in Physics ([Ebook]) : IX International Workshop / edited by Vladimir Dobrev.
Author
Dobrev, Vladimir
Other name(s)
SpringerLink (Online service)
Publication
Tokyo : Springer Japan
, 2013.
Physical Details
XIV, 554 p. 57 illus. : online resource.
Series
Springer Proceedings in Mathematics & Statistics
2194-1009 ; ; 36
ISBN
9784431542704
Summary Note
Traditionally, Lie Theory is a tool to build mathematical models for physical systems. Recently, the trend is towards geometrisation of the mathematical description of physical systems and objects. A geometric approach to a system yields in general some notion of symmetry which is very helpful in understanding its structure. Geometrisation and symmetries are meant in their broadest sense, i.e., classical geometry, differential geometry, groups and quantum groups, infinite-dimensional (super-)algebras, and their representations. Furthermore, we include the necessary tools from functional analysis and number theory. This is a large interdisciplinary and interrelated field. Samples of these new trends are presented in this volume, based on contributions from the Workshop "Lie Theory and Its Applications in Physics" held near Varna, Bulgaria, in June 2011. This book is suitable for an extensive audience of mathematicians, mathematical physicists, theoretical physicists, and researchers in the field of Lie Theory.:
System details note
Online access to this digital book is restricted to subscription institutions through IP address (only for SISSA internal users).
Internet Site
http://dx.doi.org/10.1007/978-4-431-54270-4
Links to Related Works
Subject References:
Algebra
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Geometry
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Mathematical Physics
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Mathematics
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Topological groups
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Topological groups, Lie groups
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Authors:
Dobrev, Vladimir
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Corporate Authors:
SpringerLink (Online service)
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Series:
Springer Proceedings in Mathematics & Statistics
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Classification:
512
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512 (DDC 23)
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