Algebraic Foundations of Non Commutative Differential Geometry and Quantum Groups
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Quantum groups and quantum algebras, as well as non-commutative differential geometry, are important in mathematics and considered to be useful tools for model building in statistical and quantum physics. This book presents their algebraic framework. Introductory chapters deal with background material such as Lie and Hopf superalgebras, Lie super-bialgebras, or formal power series.
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Bol Partner
Quantum groups and quantum algebras, as well as non-commutative differential geometry, are important in mathematics and considered to be useful tools for model building in statistical and quantum physics. This book presents their algebraic framework. Introductory chapters deal with background material such as Lie and Hopf superalgebras, Lie super-bialgebras, or formal power series.
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Quantum groups and quantum algebras, as well as non-commutative differential geometry, are important in mathematics and considered to be useful tools for model building in statistical and quantum physics. This book presents their algebraic framework. Introductory chapters deal with background material such as Lie and Hopf superalgebras, Lie super-bialgebras, or formal power series.
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