Truncated cube

Results: 19



#Item
1E38 ORG EO-2MOUS7-PDF | 11 Page | File Size 292 KB | 8 Jul, 2016 TABLE OF CONTENT Introduction Brief Description

E38 ORG EO-2MOUS7-PDF | 11 Page | File Size 292 KB | 8 Jul, 2016 TABLE OF CONTENT Introduction Brief Description

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Source URL: mobilefor.us

Language: English - Date: 2016-08-24 14:09:00
2Special Geometry Exam, Fall 2008, W. Stephen Wilson. Mathematics Department, Johns Hopkins University I agree to complete this exam without unauthorized assistance from any person, materials or device. Date: Name print a

Special Geometry Exam, Fall 2008, W. Stephen Wilson. Mathematics Department, Johns Hopkins University I agree to complete this exam without unauthorized assistance from any person, materials or device. Date: Name print a

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Source URL: www.math.jhu.edu

Language: English - Date: 2008-09-08 14:30:15
3Algorithmic design of self-folding polyhedra Shivendra Pandeya, Margaret Ewingb, Andrew Kunasc, Nghi Nguyend, David H. Graciasa,e,1, and Govind Menonf,1 a Department of Chemical and Biomolecular Engineering, The Johns Ho

Algorithmic design of self-folding polyhedra Shivendra Pandeya, Margaret Ewingb, Andrew Kunasc, Nghi Nguyend, David H. Graciasa,e,1, and Govind Menonf,1 a Department of Chemical and Biomolecular Engineering, The Johns Ho

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Source URL: www.dam.brown.edu

Language: English - Date: 2011-12-18 05:36:11
4Energy landscapes for the self-assembly of supramolecular polyhedra∗ Emily R. Russell†, Govind Menon‡ January 19, 2016  Abstract

Energy landscapes for the self-assembly of supramolecular polyhedra∗ Emily R. Russell†, Govind Menon‡ January 19, 2016 Abstract

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Source URL: www.dam.brown.edu

Language: English - Date: 2016-01-20 10:28:09
5An Introduction to Physically Based Modeling: Rigid Body Simulation II—Nonpenetration Constraints David Baraff Robotics Institute Carnegie Mellon University

An Introduction to Physically Based Modeling: Rigid Body Simulation II—Nonpenetration Constraints David Baraff Robotics Institute Carnegie Mellon University

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Source URL: www.cs.cmu.edu

Language: English - Date: 1997-07-23 10:54:05
6Polyhedra This category displays the five Platonic solids (tetrahedron, hexahedron (or cube), octahedron, dodecahedron, and icosahedron) both in their regular (Platonic) forms, and their truncated (Archimedean) versions

Polyhedra This category displays the five Platonic solids (tetrahedron, hexahedron (or cube), octahedron, dodecahedron, and icosahedron) both in their regular (Platonic) forms, and their truncated (Archimedean) versions

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Source URL: virtualmathmuseum.org

Language: English - Date: 2007-03-08 14:48:44
7CCCG 2007, Ottawa, Ontario, August 20–22, 2007  Unfolding Polyhedra via Cut-Tree Truncation Alex Benton∗  Joseph O’Rourke†

CCCG 2007, Ottawa, Ontario, August 20–22, 2007 Unfolding Polyhedra via Cut-Tree Truncation Alex Benton∗ Joseph O’Rourke†

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Source URL: cccg.ca

Language: English - Date: 2008-10-28 21:25:47
8CCCG 2007, Ottawa, Ontario, August 20–22, 2007  Unfolding Polyhedra via Cut-Tree Truncation Alex Benton∗  Joseph O’Rourke†

CCCG 2007, Ottawa, Ontario, August 20–22, 2007 Unfolding Polyhedra via Cut-Tree Truncation Alex Benton∗ Joseph O’Rourke†

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Source URL: cccg.ca

Language: English - Date: 2008-10-28 21:26:23
9SOLVING POINT AND PLANE VS. ORTHOGONAL POLYHEDRA USING THE EXTREME VERTICES MODEL (EVM) Antonio Aguilera. Universidad de las Américas-Puebla. Puebla, México.

SOLVING POINT AND PLANE VS. ORTHOGONAL POLYHEDRA USING THE EXTREME VERTICES MODEL (EVM) Antonio Aguilera. Universidad de las Américas-Puebla. Puebla, México.

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Source URL: wscg.zcu.cz

Language: English - Date: 2001-06-20 09:17:58
10Microsoft Word - Sword.doc

Microsoft Word - Sword.doc

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Source URL: www.gryllus.net

Language: English - Date: 2012-07-30 11:48:32