On Unfolding 3D Lattice Polygons and 2D Orthogonal Trees
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-540-69733-6_37.pdf
Reference14 articles.
1. Alt, H., Knauer, C., Rote, G., Whitesides, S.: The Complexity of (Un)folding. In: Proc. of 19th ACM Symp. on Comput. Geom., pp. 164–170 (2003)
2. Biedl, T., Demaine, E., Demaine, M., Lazard, S., Lubiw, A., O’Rourke, J., Robbins, S., Streinu, I., Toussaint, G., Whitesides, S.: A Note on Reconfiguring Tree Linkages: Trees Can Lock. Disc. Appl. Math. 117(1-3), 293–297 (2002)
3. Biedl, T., Demaine, E., Demaine, M., Lazard, S., Lubiw, A., O’Rourke, J., Overmars, M., Robbins, S., Streinu, I., Toussaint, G., Whitesides, S.: Locked and Unlocked Polygonal Chains in Three Dimensions. Disc. & Comput. Geom. 26(3), 269–281 (2001)
4. Cantarella, J., Demaine, E.D., Iben, H., O’Brien, J.: An Energy-Driven Approach to Linkage Unfolding. In: Proc. of 20th Ann. ACM Symp. on Comput. Geom., pp. 134–143 (2004)
5. Cocan, R., O’Rourke, J.: Polygonal Chains Cannot Lock in 4D. Comput. Geom.: Theory & Appl. 20, 105–129 (2001)
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