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Nonlinear Computational Geometry - Ioannis Z. Emiris#Frank J. Sottile#Thorsten Theobald
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Ioannis Z. Emiris#Frank J. Sottile#Thorsten Theobald:
Nonlinear Computational Geometry - new book

2007, ISBN: 9781441909985

ID: 2491f8aaddeb70c49828650f29cb2871

Nonlinear Computational Geometry An original motivation for algebraic geometry was to understand curves and surfaces in three dimensions. Recent theoretical and technological advances in areas such as robotics, computer vision, computer-aided geometric design and molecular biology, together with the increased availability of computational resources, have brought these original questions once more into the forefront of research. One particular challenge is to combine applicable methods from algebraic geometry with proven techniques from piecewise-linear computational geometry (such as Voronoi diagrams and hyperplane arrangements) to develop tools for treating curved objects. These research efforts may be summarized under the term nonlinear computational geometry.This volume grew out of an IMA workshop on Nonlinear Computational Geometry in May/June 2007 (organized by I.Z. Emiris, R. Goldman, F. Sottile, T. Theobald) which gathered leading experts in this emerging field. The research and expository articles in the volume are intended to provide an overview of nonlinear computational geometry. Since the topic involves computational geometry, algebraic geometry, and geometric modeling, the volume has contributions from all of these areas. By addressing a broad range of issues from purely theoretical and algorithmic problems, to implementation and practical applications this volume conveys the spirit of the IMA workshop. Bücher / Fremdsprachige Bücher / Englische Bücher 978-1-4419-0998-5, Springer

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Nonlinear Computational Geometry - Ioannis Z. Emiris#Frank J. Sottile#Thorsten Theobald
book is out-of-stock
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Ioannis Z. Emiris#Frank J. Sottile#Thorsten Theobald:
Nonlinear Computational Geometry - new book

2007, ISBN: 9781441909985

ID: 664816987

An original motivation for algebraic geometry was to understand curves and surfaces in three dimensions. Recent theoretical and technological advances in areas such as robotics, computer vision, computer-aided geometric design and molecular biology, together with the increased availability of computational resources, have brought these original questions once more into the forefront of research. One particular challenge is to combine applicable methods from algebraic geometry with proven techniques from piecewise-linear computational geometry (such as Voronoi diagrams and hyperplane arrangements) to develop tools for treating curved objects. These research efforts may be summarized under the term nonlinear computational geometry.This volume grew out of an IMA workshop on Nonlinear Computational Geometry in May/June 2007 (organized by I.Z. Emiris, R. Goldman, F. Sottile, T. Theobald) which gathered leading experts in this emerging field. The research and expository articles in the volume are intended to provide an overview of nonlinear computational geometry. Since the topic involves computational geometry, algebraic geometry, and geometric modeling, the volume has contributions from all of these areas. By addressing a broad range of issues from purely theoretical and algorithmic problems, to implementation and practical applications this volume conveys the spirit of the IMA workshop. Nonlinear Computational Geometry Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Springer

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Nonlinear Computational Geometry - Emiris, Ioannis Z. / Sottile, Frank J. / Theobald, Thorsten
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Nonlinear Computational Geometry - used book

2007, ISBN: 9781441909985

ID: 6748527

An original motivation for algebraic geometry was to understand curves and surfaces in three dimensions. Recent theoretical and technological advances in areas such as robotics, computer vision, computer-aided geometric design and molecular biology, together with the increased availability of computational resources, have brought these original questions once more into the forefront of research. One particular challenge is to combine applicable methods from algebraic geometry with proven techniques from piecewise-linear computational geometry (such as Voronoi diagrams and hyperplane arrangements) to develop tools for treating curved objects. These research efforts may be summarized under the term nonlinear computational geometry. This volume grew out of an IMA workshop on Nonlinear Computational Geometry in May/June 2007 (organized by I.Z. Emiris, R. Goldman, F. Sottile, T. Theobald) which gathered leading experts in this emerging field. The research and expository articles in the volume are intended to provide an overview of nonlinear computational geometry. Since the topic involves computational geometry, algebraic geometry, and geometric modeling, the volume has contributions from all of these areas. By addressing a broad range of issues from purely theoretical and algorithmic problems, to implementation and practical applications this volume conveys the spirit of the IMA workshop. Nonlinear Computational Geometry Emiris, Ioannis Z. / Sottile, Frank J. / Theobald, Thorsten, Springer

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Nonlinear Computational Geometry - Emiris, Ioannis Z.; Sottile, Frank J.; Theobald, Thorsten
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Emiris, Ioannis Z.; Sottile, Frank J.; Theobald, Thorsten:
Nonlinear Computational Geometry - new book

2007, ISBN: 9781441909985

ID: 511602

An original motivation for algebraic geometry was to understand curves and surfaces in three dimensions. Recent theoretical and technological advances in areas such as robotics, computer vision, computer-aided geometric design and molecular biology, together with the increased availability of computational resources, have brought these original questions once more into the forefront of research. One particular challenge is to combine applicable methods from algebraic geometry with proven techniques from piecewise-linear computational geometry (such as Voronoi diagrams and hyperplane arrangements) to develop tools for treating curved objects. These research efforts may be summarized under the term nonlinear computational geometry.This volume grew out of an IMA workshop on Nonlinear Computational Geometry in May/June 2007 (organized by I.Z. Emiris, R. Goldman, F. Sottile, T. Theobald) which gathered leading experts in this emerging field. The research and expository articles in the volume are intended to provide an overview of nonlinear computational geometry. Since the topic involves computational geometry, algebraic geometry, and geometric modeling, the volume has contributions from all of these areas. By addressing a broad range of issues from purely theoretical and algorithmic problems, to implementation and practical applications this volume conveys the spirit of the IMA workshop. Mathematics Mathematics eBook, Springer

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Nonlinear Computational Geometry - Ioannis Z. Emiris; Frank Sottile; Thorsten Theobald
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Mathematics; Algebraic Geometry; Computational Mathematics and Numerical Analysis; Geometry; General Algebraic Systems Computational, Dimension, Geometry, Nonlinear, algebra, algebraic curve, algebraic geometry, computational geometry Books Book, Springer Science+Business Media

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Details of the book
Nonlinear Computational Geometry
Author:

Ioannis Z. Emiris

Title:

Nonlinear Computational Geometry

ISBN:

An original motivation for algebraic geometry was to understand curves and surfaces in three dimensions. Recent theoretical and technological advances in areas such as robotics, computer vision, computer-aided geometric design and molecular biology, together with the increased availability of computational resources, have brought these original questions once more into the forefront of research. One particular challenge is to combine applicable methods from algebraic geometry with proven techniques from piecewise-linear computational geometry (such as Voronoi diagrams and hyperplane arrangements) to develop tools for treating curved objects. These research efforts may be summarized under the term nonlinear computational geometry. This volume grew out of an IMA workshop on Nonlinear Computational Geometry in May/June 2007 (organized by I.Z. Emiris, R. Goldman, F. Sottile, T. Theobald) which gathered leading experts in this emerging field. The research and expository articles in the volume are intended to provide an overview of nonlinear computational geometry. Since the topic involves computational geometry, algebraic geometry, and geometric modeling, the volume has contributions from all of these areas. By addressing a broad range of issues from purely theoretical and algorithmic problems, to implementation and practical applications this volume conveys the spirit of the IMA workshop. TOC:Foreword.- Preface.- Spectral techniques to explore point clouds in Euclidean space, with applications to collective coordinates in structural biology.- Rational parametrizations, intersection theory, and Newton polytopes.- Some discrete properties of the space of line transversals to disjoint balls.- Algebraic geometry and kinematics.- Rational offset surfaces and their modeling applications.- A list of challenges for real algebraic plane curve visualization software.- A subdivision method for arrangement computation of semi-algebraic curves.- Invariant-based characterization of the relative position of two projective conics.- A note on planar hexagonal meshes.- List of workshop participants.

Details of the book - Nonlinear Computational Geometry


EAN (ISBN-13): 9781441909985
ISBN (ISBN-10): 1441909982
Hardcover
Publishing year: 2009
Publisher: Springer-Verlag GmbH
239 Pages
Weight: 0,513 kg
Language: eng/Englisch

Book in our database since 31.10.2008 21:10:43
Book found last time on 14.04.2017 20:30:27
ISBN/EAN: 9781441909985

ISBN - alternate spelling:
1-4419-0998-2, 978-1-4419-0998-5


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