51,47 €
57,19 €
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They Cried for Help
They Cried for Help
51,47
57,19 €
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Energy of knots is a theory that was introduced to create a canonical configuration of a knot - a beautiful knot which represents its knot type. This book introduces several kinds of energies, and studies the problem of whether or not there is a canonical configuration of a knot in each knot type. It also considers this problems in the context of conformal geometry. The energies presented in the book are defined geometrically. They measure the complexity of embeddings and have applications to p…
  • Publisher:
  • ISBN-10: 1401028179
  • ISBN-13: 9781401028176
  • Format: 14.8 x 22.5 x 2.2 cm, hardcover
  • Language: English
  • SAVE -10% with code: EXTRA

They Cried for Help (e-book) (used book) | Jon J Chinen | bookbook.eu

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Energy of knots is a theory that was introduced to create a canonical configuration of a knot - a beautiful knot which represents its knot type. This book introduces several kinds of energies, and studies the problem of whether or not there is a canonical configuration of a knot in each knot type. It also considers this problems in the context of conformal geometry. The energies presented in the book are defined geometrically. They measure the complexity of embeddings and have applications to physical knotting and unknotting through numerical experiments.

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  • Author: Jon J Chinen
  • Publisher:
  • ISBN-10: 1401028179
  • ISBN-13: 9781401028176
  • Format: 14.8 x 22.5 x 2.2 cm, hardcover
  • Language: English English

Energy of knots is a theory that was introduced to create a canonical configuration of a knot - a beautiful knot which represents its knot type. This book introduces several kinds of energies, and studies the problem of whether or not there is a canonical configuration of a knot in each knot type. It also considers this problems in the context of conformal geometry. The energies presented in the book are defined geometrically. They measure the complexity of embeddings and have applications to physical knotting and unknotting through numerical experiments.

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