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Fast arithmetic in algorithmic self-assembly., , , and . Natural Computing, 15 (1): 115-128 (2016)Universal Shape Replicators via Self-Assembly with Attractive and Repulsive Forces., , , , , , and . SODA, page 225-238. SIAM, (2017)Shape Replication through Self-Assembly and RNase Enzymes., , , , , , , and . SODA, page 1045-1064. SIAM, (2010)Complexities for generalized models of self-assembly., , , and . SODA, page 880-889. SIAM, (2004)The tile assembly model is intrinsically universal, , , , , and . CoRR, (2011)Randomized Fast Design of Short DNA Words, , and . CoRR, (2006)Staged Self-assembly: Nanomanufacture of Arbitrary Shapes with O (1) Glues., , , , , , and . DNA, volume 4848 of Lecture Notes in Computer Science, page 1-14. Springer, (2007)Flipping Tiles: Concentration Independent Coin Flips in Tile Self-Assembly., , , , , , and . DNA, volume 9211 of Lecture Notes in Computer Science, page 87-103. Springer, (2015)Self-Assembly of Any Shape with Constant Tile Types using High Temperature., , , and . ESA, volume 112 of LIPIcs, page 14:1-14:14. Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik, (2018)Self-Assembly of Squares and Scaled Shapes.. Encyclopedia of Algorithms, (2016)