Difference between revisions of "Msc1G2:Student1"
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<iframe src="//giphy.com/embed/3oEduV1Zf7p71QbD1u" width="850" height="530" frameBorder="0" class="giphy-embed" allowFullScreen></iframe><p> | <iframe src="//giphy.com/embed/3oEduV1Zf7p71QbD1u" width="850" height="530" frameBorder="0" class="giphy-embed" allowFullScreen></iframe><p> | ||
<i>Diagrammatic simulation of possible new connections without building static bridges</i> | <i>Diagrammatic simulation of possible new connections without building static bridges</i> | ||
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<iframe src="//giphy.com/embed/3oEduOJPTSvbZB5y2Q" width="850" height="530" frameBorder="0" class="giphy-embed" allowFullScreen></iframe> | <iframe src="//giphy.com/embed/3oEduOJPTSvbZB5y2Q" width="850" height="530" frameBorder="0" class="giphy-embed" allowFullScreen></iframe> | ||
<i> Diagrammatic simulation of how the system works according to attractors</i> | <i> Diagrammatic simulation of how the system works according to attractors</i> | ||
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<h2>Computational approach</h2> | <h2>Computational approach</h2> |
Revision as of 10:35, 5 November 2015
System
Diagrammatic simulation of possible new connections without building static bridges
Diagrammatic simulation of how the system works according to attractors
Computational approach
Grasshopper (Python) simulation of how new powerlines between points occure Grasshopper (Kangaroo) simulation of how the modules find their position on a powerline Grasshopper (Kangaroo) simulation of how existing bridges can react according to changing attractor valuesInspiration