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The cover of “Clifford Algebras with Numeric and Symbolic Computations” - Open Library.

"Clifford Algebras with Numeric and Symbolic Computations" is published by Birkhäuser in Dec 12, 2012 - Boston, MA and it has 340 pages.


“Clifford Algebras with Numeric and Symbolic Computations” Metadata:

  • Title: ➤  Clifford Algebras with Numeric and Symbolic Computations
  • Author:
  • Number of Pages: 340
  • Publisher: Birkhäuser
  • Publish Date:
  • Publish Location: Boston, MA

“Clifford Algebras with Numeric and Symbolic Computations” Subjects and Themes:

Edition Specifications:

  • Format: paperback

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"Clifford Algebras with Numeric and Symbolic Computations" Description:

The Open Library:

Clifford algebras are at a crossing point in a variety of research areas, including abstract algebra, crystallography, projective geometry, quantum mechanics, differential geometry and analysis. For many researchers working in this field in ma- thematics and physics, computer algebra software systems have become indispensable tools in theory and applications. This edited survey book consists of 20 chapters showing application of Clifford algebra in quantum mechanics, field theory, spinor calculations, projective geometry, Hypercomplex algebra, function theory and crystallography. Many examples of computations performed with a variety of readily available software programs are presented in detail, i.e., Maple, Mathematica, Axiom, etc. A key feature of the book is that it shows how scientific knowledge can advance with the use of computational tools and software.

Open Data:

Clifford algebras are at a crossing point in a variety of research areas, including abstract algebra, crystallography, projective geometry, quantum mechanics, differential geometry and analysis. For many researchers working in this field in ma- thematics and physics, computer algebra software systems have become indispensable tools in theory and applications. This edited survey book consists of 20 chapters showing application of Clifford algebra in quantum mechanics, field theory, spinor calculations, projective geometry, Hypercomplex algebra, function theory and crystallography. Many examples of computations performed with a variety of readily available software programs are presented in detail, i.e., Maple, Mathematica, Axiom, etc. A key feature of the book is that it shows how scientific knowledge can advance with the use of computational tools and software

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