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The Simulation Powers and Limitations of Higher Temperature Hierarchical Self-Assembly Systems.

, , and . Fundam. Informaticae, 155 (1-2): 131-162 (2017)

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Oritatami System; a Survey and the Impossibility of Simple Simulation at Small Delays., and . Fundam. Informaticae, 154 (1-4): 359-372 (2017)Universal Computation with Arbitrary Polyomino Tiles in Non-Cooperative Self-Assembly., , , , and . CoRR, (2014)The Simulation Powers and Limitations of Higher Temperature Hierarchical Self-Assembly Systems., , and . CoRR, (2015)Hierarchical self-assembly of fractals with signal-passing tiles., , , , and . Nat. Comput., 17 (1): 47-65 (2018)Self-attraction Removal from Oritatami Systems., , , and . DCFS, volume 10316 of Lecture Notes in Computer Science, page 164-176. Springer, (2017)The Power of Duples (in Self-Assembly): It's Not So Hip to Be Square., , , and . COCOON, volume 8591 of Lecture Notes in Computer Science, page 215-226. Springer, (2014)Universal Computation with Arbitrary Polyomino Tiles in Non-Cooperative Self-Assembly., , , , and . SODA, page 148-167. SIAM, (2015)Computing in continuous space with self-assembling polygonal tiles (extended abstract)., , , and . SODA, page 937-956. SIAM, (2016)Reflections on Tiles (in Self-Assembly)., , and . CoRR, (2014)Reflections on Tiles (in Self-Assembly)., , and . DNA, volume 9211 of Lecture Notes in Computer Science, page 55-70. Springer, (2015)