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Dive into the research topics where Martin L. Demaine is active.

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Featured researches published by Martin L. Demaine.


Archive | 2015

Weaving a uniformly thick sheet from rectangles

Eli Davis; Erik D. Demaine; Martin L. Demaine; Jennifer Ramseyer

In this paper, we demonstrate a way to weave together finitelength strips into a uniformly thick infinite sheet. Because we require our sheet to be locked and unable to slip, our model requires more layers than a conventional weave. For an arbitrary rectangle, the sheet is at most 16 layers thick. For some families of tileable shapes, the sheet is at most 18 layers thick. Certain specially designed shapes achieve thinner weaves. We have also designed finite weaves of rectangles that remain locked and uniformly thick, but at the cost of doubling the number of layers.


symposium on discrete algorithms | 1999

Locked and unlocked polygonal chains in 3D

Therese C. Biedl; Erik D. Demaine; Martin L. Demaine; Sylvain Lazard; Anna Lubiw; Joseph O'Rourke; Mark H. Overmars; Steve Robbins; Ileana Streinu; Godfried T. Toussaint; Sue Whitesides


Archive | 2016

Reconstructing David Huffman’s Legacy in Curved-Crease Folding

Erik D. Demaine; Martin L. Demaine; Duks Koschitz


Archive | 2010

Universal Hinge Patterns for Folding Orthogonal Shapes

Nadia M. Benbernou; Erik D. Demaine; Martin L. Demaine; Aviv Ovadya


Archive | 2009

Games of No Chance 3: The complexity of Dyson Telescopes

Erik D. Demaine; Martin L. Demaine; Rudolf Fleischer; Robert A. Hearn; Timo von Oertzen


Archive | 2015

Scaling any Surface Down to any Fraction

Erik D. Demaine; Martin L. Demaine; Kayhan F. Qaiser


Archive | 2018

Knapp Lecture Series: Playing with Art and Science: Origami, Glass and Mathematics

Martin L. Demaine; Erik D. Demaine


電子情報通信学会技術研究報告. MSS, システム数理と応用 | 2013

Bumpy Pyramid Folding Problem (システム数理と応用)

Zachary Abel; Erik D. Demaine; Martin L. Demaine; Hiro Ito; Jack Snoeyink; Ryuhei Uehara


電子情報通信学会技術研究報告. COMP, コンピュテーション | 2013

Computational Complexity of Piano-Hinged Dissections (コンピュテーション)

Zachary Abel; Erik D. Demaine; Martin L. Demaine; Takashi Horiyama; Ryuhei Uehara


電子情報通信学会技術研究報告. CAS, 回路とシステム | 2013

Bumpy Pyramid Folding Problem (回路とシステム)

Zachary Abel; Erik D. Demaine; Martin L. Demaine; Hiro Ito; Jack Snoeyink; Ryuhei Uehara

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Erik D. Demaine

Free University of Berlin

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Zachary Abel

Massachusetts Institute of Technology

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Ryuhei Uehara

Japan Advanced Institute of Science and Technology

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Jack Snoeyink

University of North Carolina at Chapel Hill

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Hiro Ito

University of Electro-Communications

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Anna Lubiw

University of Waterloo

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