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Does the first triangulation work for arbitrary 𝒏?
Do triangulations which use a mix of the two fall in between the two in terms of what angles and 𝒏 are possible?
Have you tried the same thing with a large 𝒌-gon?
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Could you go over the definition/meaning of semi-creases?
Can you explain what 𝑪𝟏 and 𝑪𝟐 are?
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Why does that 𝒏(𝒑) is perpendicular to the boundary edge imply that 𝒏𝒏(𝒑) is?
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You're proving things are impossible, even though we have paper examples of them existing! So my question is, what about the mathematical model is more restrictive than the real world? What choice do we make in modeling the paper that allows us to prove something is impossible in the model which is possible in real life?
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Abstract and title removed due to copyright restrictions.
Refer to: Cardinal, J., E. D. Demaine, et al. "Algorithmic Folding Complexity."
Graphs and Combinatorics 27, no. 3 (2011): 341–51.
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http://en.wikipedia.org/wiki/File:Dragon_curve_animation.gif by 碳酸鈣, 2008 6
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render by Solkoll 2005 This image in the public domain on Wikimedia Commons.7
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1990
Front cover of Jurassic Park by MichaelCrichton and photograph of Ian Malcolmremoved due to copyright restrictions.
© Alfred A. Knopf. All rights reserved. This content is excluded from our Creative Commons
license. For more information, see http://ocw.mit.edu/help/faq-fair-use/.8
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Hyparhedra: Platonic Solids [Demaine, Demaine, Lubiw 1999]
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Demaine, Demaine,
Lubiw 1999
Courtesy of Erik D. Demaine, Martin L. Demaine, and Anna Lubiw. Used with permission.10
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[Demaine, Demaine, Lubiw 1999]
𝑘-gon 𝑘-hat
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http://en.wikipedia.org/wiki/File:Truncatedtetrahedron.gif by Cyp
Screencap of animation of rotating truncated tetrahedron removed due to copyright restrictions.
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MIT OpenCourseWarehttp://ocw.mit.edu
6.849 Geometric Folding Algorithms: Linkages, Origami, PolyhedraFall 2012
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