<--- Back to Details
First PageDocument Content
Triangles / Polyhedra / Euclidean plane geometry / Polyform / Recreational mathematics / Dissection problem / Polyomino / Area / Harry Lindgren / Geometry / Euclidean geometry / Triangle geometry
Date: 2002-03-20 15:52:56
Triangles
Polyhedra
Euclidean plane geometry
Polyform
Recreational mathematics
Dissection problem
Polyomino
Area
Harry Lindgren
Geometry
Euclidean geometry
Triangle geometry

Add to Reading List

Source URL: erikdemaine.org

Download Document from Source Website

File Size: 62,33 KB

Share Document on Facebook

Similar Documents

Counterexample-guided Refinement of Template Polyhedra Sergiy Bogomolov12, Goran Frehse3, Mirco Giacobbe2, and Thomas A. Henzinger2 1  3

Counterexample-guided Refinement of Template Polyhedra Sergiy Bogomolov12, Goran Frehse3, Mirco Giacobbe2, and Thomas A. Henzinger2 1 3

DocID: 1xW2M - View Document

Regular Polyhedra in n Dimensions  Jeffrey Adams SUM Conference Brown University March 14, 2015

Regular Polyhedra in n Dimensions Jeffrey Adams SUM Conference Brown University March 14, 2015

DocID: 1v031 - View Document

Investigating Polyhedra by Oracles Volker Kaibel & Matthias Walter Traditional Approach  Modern Approach

Investigating Polyhedra by Oracles Volker Kaibel & Matthias Walter Traditional Approach Modern Approach

DocID: 1upCI - View Document

CCCG 2011, Toronto ON, August 10–12, 2011  Edge-Unfolding Orthogonal Polyhedra is Strongly NP-Complete Zachary Abel∗  Erik D. Demaine†

CCCG 2011, Toronto ON, August 10–12, 2011 Edge-Unfolding Orthogonal Polyhedra is Strongly NP-Complete Zachary Abel∗ Erik D. Demaine†

DocID: 1uhJD - View Document

The Polyhedral Model Definitions Operations on Polyhedra Quantifier Elimination and SMT solvers Last Words

The Polyhedral Model Definitions Operations on Polyhedra Quantifier Elimination and SMT solvers Last Words

DocID: 1uefT - View Document