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The Chinese Postman Problem Based on the Probe Machine Model.

, , , , and . BIC-TA (2), volume 952 of Communications in Computer and Information Science, page 55-62. Springer, (2018)

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Searching for Maximum Clique by DNA Origami., , , and . ICNC-FSKD, page 167-172. IEEE, (2018)Probe Machine Based Computing Model for Solving Satisfiability Problem., , , , and . BIC-TA (2), volume 1160 of Communications in Computer and Information Science, page 79-92. Springer, (2019)DNA Computing Model of the Integer Linear Programming Problem Based on Molecular Beacon., , , and . ICIC (3), volume 4115 of Lecture Notes in Computer Science, page 238-247. Springer, (2006)Molecular Computation: Solving 3-Vertex-Colourability Problem., , and . ICIC (3), volume 2 of Communications in Computer and Information Science, page 450-458. Springer, (2007)The Circular DNA Model of 0-1 Programming Problem Based on DNA Strand Displacement., , , , and . ICNC-FSKD, page 173-177. IEEE, (2018)DNA Origami Based Computing Model for the Satisfiability Problem., , , and . BIC-TA (1), volume 951 of Communications in Computer and Information Science, page 151-160. Springer, (2018)Solution to Satisfiability Problem Based on Molecular Beacon Microfluidic Chip Computing Model., , , , and . BIC-TA (1), volume 1565 of Communications in Computer and Information Science, page 415-425. Springer, (2021)Maximum Weight Clique Problem Based on Sticker Model., , , and . ICNC (6), page 171-175. IEEE Computer Society, (2009)Base Conversion Model Based on DNA Strand Displacement., , , , and . BIC-TA (2), volume 1160 of Communications in Computer and Information Science, page 93-102. Springer, (2019)The Chinese Postman Problem Based on the Probe Machine Model., , , , and . BIC-TA (2), volume 952 of Communications in Computer and Information Science, page 55-62. Springer, (2018)