Multiresolution methods in geometric modelling are concerned with the generation, representation, and manipulation of geometric objects at several levels of detail. Applications include fast visualization and rendering as well as coding, compression, and digital transmission of 3D geometric objects.
This book marks the culmination of the four-year EU-funded research project, Multiresolution in Geometric Modelling (MINGLE). The book contains seven survey papers, providing a detailed overview of recent advances in the various fields within multiresolution modelling, and sixteen additional research papers.
Each of the seven parts of the book starts with a survey paper, followed by the associated research papers in that area. All papers were originally presented at the MINGLE 2003 workshop held at Emmanuel College, Cambridge, UK, 9-11 September 2003.
| ISBN: | 9783642059889 |
| Publication date: | 22nd October 2010 |
| Author: | Neil Dodgson, Michael S Floater, Malcolm Sabin |
| Publisher: | Springer an imprint of Springer Berlin Heidelberg |
| Format: | Paperback |
| Pagination: | 436 pages |
| Series: | Mathematics and Visualization |
| Genres: |
Mathematical modelling Numerical analysis Information visualization Geometry Maths for engineers Graphics programming Computer modelling and simulation |
Multiresolution methods in geometric modelling are concerned with the generation, representation, and manipulation of geometric objects at several levels of detail. Applications include fast visualization and rendering as well as coding, compression, and digital transmission of 3D geometric objects.
Advances in Multiresolution for Geometric Modelling features in the following genres: Mathematical modelling, Numerical analysis, Information visualization, Geometry, Maths for engineers, Graphics programming, Computer modelling and simulation
Paperback. Not Available.
Advances in Multiresolution for Geometric Modelling was written by Neil Dodgson, Michael S Floater, Malcolm Sabin and published by Springer an imprint of Springer Berlin Heidelberg
Advances in Multiresolution for Geometric Modelling has 436 pages
Yes it is part of Mathematics and Visualization series