Handbook of Discrete and Computational Geometry

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

The Handbook of Discrete and Computational Geometry is intended as a reference book fully accessible to nonspecialists as well as specialists, covering all major aspects of both fields.

The book offers the most important results and methods in discrete and computational geometry to those who use them in their work, both in the academic world—as researchers in mathematics and computer science—and in the professional world—as practitioners in fields as diverse as operations research, molecular biology, and robotics.

Discrete geometry has contributed significantly to the growth of discrete mathematics in recent years. This has been fueled partly by the advent of powerful computers and by the recent explosion of activity in the relatively young field of computational geometry. This synthesis between discrete and computational geometry lies at the heart of this Handbook.

A growing list of application fields includes combinatorial optimization, computer-aided design, computer graphics, crystallography, data analysis, error-correcting codes, geographic information systems, motion planning, operations research, pattern recognition, robotics, solid modeling, and tomography.

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Detaljer
  • SprogEngelsk
  • Sidetal1950
  • Udgivelsesdato09-11-2017
  • ISBN139781498711395
  • Forlag Chapman & Hall/CRC
  • FormatHardback
Størrelse og vægt
  • Vægt3160 g
  • coffee cup img
    10 cm
    book img
    17,8 cm
    25,4 cm

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    Polyhedra Convex bodies Triangulation Configuration space Hull simple Voronoi Delaunay triangulation Convex polyhedra Michael Hoffmann Computational geometry Convex hull Simplicial complex Topological data analysis Delaunay Diagram Voronoi Diagrams Polytope Polygon Betti Numbers Convex polytope Metric space Rolf Schneider Persistent homology Alexander Barvinok Alexandr Andoni Andrew J. Blumberg Anders Björner Anastasios Sidiropoulos Benjamin Lorenz Bernd Schulze NA Bernd Gärtner Andreas Holmsen Chee K. Yap Christoph M. Hoffmann Chandrjit L. Bajaj Bernd Schulze Convex Polygon Bhubaneswar Mishra David M. Mount Csaba D. Tth Dan Halperin Carl W. Lee Davenport Schinzel Sequence E. Harriss Egon Schulte Constrained Delaunay Triangulation Emo Welzl Edgar Ramos David Dobkin Dmitriy Morozov Francisco Santos convex Éric Colin de Verdière Erik D. Demaine D.A. Klarner G. Barequet Gil Kalai Herbert Edelsbrunner Dinesh Manocha G.T. Toussaint D. Schattschneider Jeff M. Phillips Emilio Di Giacomo Jiří Matoušek Joseph O'Rourke Js Pach Jürgen Richter-Gebert Martin Dyer Jack Snoeyink Louis J. Billera Lutz Kettner Micha Sharir Ming C. Lin Minkowski Sum Jonathan R. Shewchuk Matthew Kahle Leonidas J Guibas Nina Amenta Marco Pellegrini Martin Henk Marshall Bern Frédéric Chazal Giuseppe Liotte M. Hubert Michael Joswig Nodari Sitchinava Gr Fejes Tth M. Senechal Günter M. Ziegler Pankaj K. Agarwal Nabil H. Mustafa Peter Gritzmann Nimrod Megiddo Patrice Koehl Pseudoline Arrangements Peter J. Rousseeuw Rephael Wenger J. Ralph Alexander Rade T. Živaljević Kiril Solovey Jacob E. Goodman Robert Connelly Stefan Felsner R.L. Graham NA Subhash Suri Tamal K. Dey Lydia E. Kavraki Jzsef Beck Ketan Mulmuley Marjorie Senechal NA Seth Teller Yann Disser William W.L. Chen Young J. Kim Joseph S.B. Mitchell Kasturi Varadarajan Marcel Roeloffzen N.L. White Oren Salzman Oriented Matroid Otfried Cheong Michael T. Goodrich M. van Kreveld NA Raimund Seidel Simple polygon Steven S. Skiena Relative Neighborhood Graph Roberto Tamassia Piotr Indyk Victor Klee Saugata Basu Semialgebraic set Vikram Sharma Stefan Näher Steven Fortune Running Time S.W. Golomb Simplicial Polytopes Ulrich Brehm Vadim Shapiro Voronoi Cell Walter Whiteley

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