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Modeling through self-assembly Stam, Jos
Description
Usually shapes are modeled through a top down approach. Think of smooth surfaces defined by a few control points. In this talk I will propose an opposite paradigm. This approach creates shapes from a bottom up approach. Think of the "Game of life." Shapes emerge from small scale interactions through local interactions. This approach is inspired by micro-biology. Key to this approach is to use a dynamics solver. More details can be found on the following web page. https://www.autodeskresearch.com/publications/jmi2012
Item Metadata
Title |
Modeling through self-assembly
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Creator | |
Publisher |
Banff International Research Station for Mathematical Innovation and Discovery
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Date Issued |
2017-09-27T16:02
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Description |
Usually shapes are modeled through a top down approach. Think of smooth surfaces defined by a few control points. In this talk I will propose an opposite paradigm. This approach creates shapes from a bottom up approach. Think of the "Game of life." Shapes emerge from small scale interactions through local interactions. This approach is inspired by micro-biology. Key to this approach is to use a dynamics solver. More details can be found on the following web page. https://www.autodeskresearch.com/publications/jmi2012
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Extent |
48 minutes
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Subject | |
Type | |
File Format |
video/mp4
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Language |
eng
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Notes |
Author affiliation: Autodesk Research
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Series | |
Date Available |
2018-03-27
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Provider |
Vancouver : University of British Columbia Library
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Rights |
Attribution-NonCommercial-NoDerivatives 4.0 International
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DOI |
10.14288/1.0364481
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URI | |
Affiliation | |
Peer Review Status |
Unreviewed
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Scholarly Level |
Faculty
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Rights URI | |
Aggregated Source Repository |
DSpace
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Item Media
Item Citations and Data
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International