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Bumpy Pyramid Folding., , , , , and . CCCG, Carleton University, Ottawa, Canada, (2014)Computing 3SAT on a Fold-and-Cut Machine., , , and . CCCG, page 208-213. (2017)Path Puzzles: Discrete Tomography with a Path Constraint is Hard., , , , , and . Graphs Comb., 36 (2): 251-267 (2020)An end-to-end approach to making self-folded 3D surface shapes by uniform heating., , , , , , , , and . ICRA, page 1466-1473. IEEE, (2014)Locked and Unlocked Chains of Planar Shapes., , , , , , , and . Discret. Comput. Geom., 44 (2): 439-462 (2010)Characterization of Curved Creases and Rulings: Design and Analysis of Lens Tessellations., , , , and . CoRR, (2015)Path Puzzles: Discrete Tomography with a Path Constraint is Hard., , , , , and . CoRR, (2018)Folding and Cutting Paper., , and . JCDCG, volume 1763 of Lecture Notes in Computer Science, page 104-118. Springer, (1998)Algorithms for Solving Rubik's Cubes., , , , and . ESA, volume 6942 of Lecture Notes in Computer Science, page 689-700. Springer, (2011)Puzzles, Art, and Magic with Algorithms., and . Theory Comput. Syst., 39 (3): 473-481 (2006)