Difference between revisions of "Msc2G5:Component optimization"

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[[Msc2G5:Component optimization|'''Component optimization''']]
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    <div class="text" id="text"><div class="text2" id="text2"><p>The main appearance of the structure is based on the mathematical embedded minimal surface discovered in 1982 by Celso José da Costa. The topology is created by puncturing a compact surface, therefore becoming a finite topology. The current design is a topologically thrice-punctured torus which is deformed until the planer end becomes catenoidal. The topology can be described using the Weierstrass zeta and the Weierstrass elliptic functions.
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[[Msc2G5:Form finding|'''Form finding''']]
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[[File:wiki slidares_Page_03.jpg|212px]][[File:wiki slidares_Page_04.jpg|212px]][[File:wiki slidares_Page_15.jpg|212px ]][[File:wiki slidares_Page_16.jpg|212px]]
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[[Msc2G5:Behaviour|'''Behaviour''']]
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----
[[Msc2G5:Physical model|'''Physical model''']]
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With the support of the Culture Programme of the EU.<br>
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[[File:EU_flag.jpg|420px]][[File:META_logo.jpg|420px]]
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[[File:Pattern_prototyping-01.jpg|800px]]
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Latest revision as of 11:41, 23 March 2016


The main appearance of the structure is based on the mathematical embedded minimal surface discovered in 1982 by Celso José da Costa. The topology is created by puncturing a compact surface, therefore becoming a finite topology. The current design is a topologically thrice-punctured torus which is deformed until the planer end becomes catenoidal. The topology can be described using the Weierstrass zeta and the Weierstrass elliptic functions.

Wiki slidares Page 03.jpgWiki slidares Page 04.jpgWiki slidares Page 15.jpgWiki slidares Page 16.jpg Wiki slidares Page 17.jpgWiki slidares Page 19.jpgWiki slidares Page 20.jpgWiki slidares Page 34.jpg Wiki slidares Page 35.jpgWiki slidares Page 36.jpgWiki slidares Page 37.jpgWiki slidares Page 38.jpg Wiki slidares Page 39.jpgWiki slidares Page 40.jpgWiki slidares Page 41.jpg


With the support of the Culture Programme of the EU.
EU flag.jpgMETA logo.jpg