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Physical And Numerical Models In Knot Theory: Including Applications To The Life Sciences

Om Physical And Numerical Models In Knot Theory: Including Applications To The Life Sciences

The physical properties of knotted and linked configurations in space have long been of interest to mathematicians. More recently, these properties have become significant to biologists, physicists, and engineers among others. Their depth of importance and breadth of application are now widely appreciated and valuable progress continues to be made each year. This volume presents several contributions from researchers using computers to study problems that would otherwise be intractable. While computations have long been used to analyze problems, formulate conjectures, and search for special structures in knot theory, increased computational power has made them a staple in many facets of the field. The volume also includes contributions concentrating on models researchers use to understand knotting, linking, and entanglement in physical and biological systems. Topics include properties of knot invariants, knot tabulation, studies of hyperbolic structures, knot energies, the exploration

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  • Språk:
  • Engelska
  • ISBN:
  • 9789812561879
  • Format:
  • Inbunden
  • Sidor:
  • 628
  • Utgiven:
  • 21 September 2005
  • Mått:
  • 159x236x29 mm.
  • Vikt:
  • 1054 g.
Leveranstid: 2-4 veckor
Förväntad leverans: 23 Juli 2024

Beskrivning av Physical And Numerical Models In Knot Theory: Including Applications To The Life Sciences

The physical properties of knotted and linked configurations in space have long been of interest to mathematicians. More recently, these properties have become significant to biologists, physicists, and engineers among others. Their depth of importance and breadth of application are now widely appreciated and valuable progress continues to be made each year. This volume presents several contributions from researchers using computers to study problems that would otherwise be intractable. While computations have long been used to analyze problems, formulate conjectures, and search for special structures in knot theory, increased computational power has made them a staple in many facets of the field. The volume also includes contributions concentrating on models researchers use to understand knotting, linking, and entanglement in physical and biological systems. Topics include properties of knot invariants, knot tabulation, studies of hyperbolic structures, knot energies, the exploration

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