Difference between revisions of "SPM 2019"
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{{Event | {{Event | ||
+ | |Acronym=SPM 2019 | ||
+ | |Title=Solid and Physical Modeling 2019 | ||
+ | |Series=SPM | ||
+ | |Type=Conference | ||
+ | |Start date=2019/06/17 | ||
+ | |End date=2019/06/19 | ||
+ | |Homepage=https://project.inria.fr/spm2019/ | ||
+ | |City=Vancouver | ||
+ | |Country=Canada | ||
|has program chair=Pierre Alliez, Xin (Shane) Li, Yong-Jin Liu | |has program chair=Pierre Alliez, Xin (Shane) Li, Yong-Jin Liu | ||
|Has PC member=Nina Amenta, Omri Azencot, Michael Barton, Carolina Beccari, Silvia Biasotti, Georges-Pierre Bonneau | |Has PC member=Nina Amenta, Omri Azencot, Michael Barton, Carolina Beccari, Silvia Biasotti, Georges-Pierre Bonneau | ||
|has Keynote speaker=Annalisa Buffa, Ligang Liu | |has Keynote speaker=Annalisa Buffa, Ligang Liu | ||
− | + | |State=CA/BC}} | |
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− | |State | ||
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==Topics== | ==Topics== | ||
Topics of interest include, but are not limited to: | Topics of interest include, but are not limited to: |
Revision as of 00:21, 25 October 2021
Event Rating
median | worst |
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List of all ratings can be found at SPM 2019/rating
SPM 2019 | |
---|---|
Solid and Physical Modeling 2019
| |
Event in series | SPM |
Dates | 2019/06/17 (iCal) - 2019/06/19 |
Homepage: | https://project.inria.fr/spm2019/ |
Location | |
Location: | Vancouver, CA/BC, Canada |
Committees | |
PC chairs: | Pierre Alliez, Xin (Shane) Li, Yong-Jin Liu |
PC members: | Nina Amenta, Omri Azencot, Michael Barton, Carolina Beccari, Silvia Biasotti, Georges-Pierre Bonneau |
Keynote speaker: | Annalisa Buffa, Ligang Liu |
Table of Contents | |
Topics
Topics of interest include, but are not limited to:
* 3D fabrication/printing/manufacturing technologies * Anisotropic/heterogeneous/composite materials * Applied algebraic and differential geometry * Applied computational geometry and topology * Conceptual, collaborative, and distributed design * Computational fabrication * Curve, surface, and manifold modeling * Dimensioning and tolerancing * Feature modeling, recognition, and understanding * Geometric algorithms * Geometric and topological representations * Geometric constraint solving and parametric modeling * Geometric interpolation and smoothing * Geometry generation and processing * Geometry compression and transmission * Isogeometric analysis * Meshing and mesh optimization * Multi-resolution modeling * Numerical analysis of geometric algorithms * Physically-based modeling and simulation * Product data exchange, standards, and interoperability * Reverse engineering/reconstruction of surfaces/solids * Robustness and validity of geometric computations * Shape modeling, synthesis and analysis