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Invariants of Quadratic Differential Forms [Paperback]

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  • Category: Books (Mathematics)
  • Author:  Veblen, Oswald
  • Author:  Veblen, Oswald
  • ISBN-10:  0521604842
  • ISBN-10:  0521604842
  • ISBN-13:  9780521604840
  • ISBN-13:  9780521604840
  • Publisher:  Cambridge University Press
  • Publisher:  Cambridge University Press
  • Pages:  112
  • Pages:  112
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-May-2004
  • Pub Date:  01-May-2004
  • SKU:  0521604842-11-MPOD
  • SKU:  0521604842-11-MPOD
  • Item ID: 101415770
  • Seller: ShopSpell
  • Ships in: 2 business days
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  • Delivery by: Jan 19 to Jan 21
  • Notes: Brand New Book. Order Now.
An early tract for students of differential geometry and mathematical physics.Written in the wake of the advent of Relativity by an author who made important contributions to projective and differential geometry, and topology, this early Cambridge Tract in Mathematics and Theoretical Physics aimed to assist students of the time from the fields of differential geometry and mathematical physics.Written in the wake of the advent of Relativity by an author who made important contributions to projective and differential geometry, and topology, this early Cambridge Tract in Mathematics and Theoretical Physics aimed to assist students of the time from the fields of differential geometry and mathematical physics.Written in the wake of the advent of Relativity by an author who made important contributions to projective and differential geometry, and topology, this early Cambridge Tract in Mathematics and Theoretical Physics aimed to assist students of the time from the fields of differential geometry and mathematical physics. Beginning by introducing formal preliminaries, the text continues, bringing the underlying differential invariant theory that to this day remains relevant in a range of geometrical and physical applications, to the fore.Preface; 1. Formal preliminaries; 2. Differential invariants; 3. Quadratic differential forms; 4. Euclidean geometry; 5. The equivalence problem; 6. Normal coordinates.
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