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Replication of arbitrary hole-free shapes via self-assembly with signal-passing tiles (extended abstract)., , and . CoRR, (2015)Replication of Arbitrary Hole-Free Shapes via Self-assembly with Signal-Passing Tiles., , and . UCNC, volume 9252 of Lecture Notes in Computer Science, page 202-214. Springer, (2015)Doubles and negatives are positive (in self-assembly)., , and . Nat. Comput., 15 (1): 69-85 (2016)Self-Assembly of 4-Sided Fractals in the Two-Handed Tile Assembly Model., and . UCNC, volume 10240 of Lecture Notes in Computer Science, page 113-128. Springer, (2017)The Simulation Powers and Limitations of Higher Temperature Hierarchical Self-Assembly Systems., , and . Fundam. Informaticae, 155 (1-2): 131-162 (2017)Polysizemic Encryption: Towards a Variable-Length Output Symmetric-Key Cryptosystem., , and . COMPSAC (2), page 688-693. IEEE, (2019)Replication of Arbitrary Hole-Free Shapes via Self-assembly with Signal-Passing Tiles., , , and . New Gener. Comput., 40 (2): 553-601 (2022)Supporting Distributed Search in Virtual Worlds., , , , and . HCI (26), volume 8029 of Lecture Notes in Computer Science, page 395-404. Springer, (2013)Thermodynamically Favorable Computation via Tile Self-assembly., , , and . UCNC, volume 10867 of Lecture Notes in Computer Science, page 16-31. Springer, (2018)Reflections on tiles (in self-assembly)., , and . Nat. Comput., 16 (2): 295-316 (2017)