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Titlebook: Advances in Geometric Modeling and Processing; 6th International Co Bernard Mourrain,Scott Schaefer,Guoliang Xu Conference proceedings 2010

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Language-Related and Learning Disordersorithm is based on an efficient culling technique that eliminates redundant curves and surfaces which obviously contain no projection from the given point. Based on this scheme, we can reduce the whole computation to considerably smaller subproblems, which are then solved using a numerical method. I
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https://doi.org/10.1007/978-0-387-47672-8hand, subdivision technology has always been active in computer aided design since its invention. The flexibility and high quality of the subdivision surface makes them a powerful tool in geometry modeling and surface designing. In this paper, we combine these two ingredients together aiming at cons
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Language-Related and Learning DisordersD process. For a CAD object, we can construct various computational domain with same shape but with different parameterization. One basic requirement is that the resulting parameterization should have no self-intersections. In this paper, a linear and easy-to-check sufficient condition for injectivi
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https://doi.org/10.1007/978-0-387-47672-8et of points in a compact 3D domain (i.e. a finite 3D volume), some Voronoi cells of their Voronoi diagram are infinite, but in practice only the parts of the cells inside the domain are needed, as when computing the centroidal Voronoi tessellation. Such a Voronoi diagram confined to a compact domai
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