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Titlebook: DNA Computing and Molecular Programming; 17th International C Luca Cardelli,William Shih Conference proceedings 2011 Springer-Verlag GmbH B

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楼主: centipede
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0302-9743 rnational Conference on DNA Computing and Molecular Programming, DNA17, held in Pasadena, CA, USA, in September 2011. .The 12 revised full papers presented together with 5 invited talks were carefully selected from numerous submissions. Research in DNA computing and molecular programming draws toget
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https://doi.org/10.1007/978-3-8349-9047-1ience concepts–including abstraction, modularity, state, universality, concurrency, safety, specifications, verification, complexity, and randomness–are contributing to the development of molecular programming.
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Christian Rüttgers,Katharina Hochgürteltion in purely graph-theoretic terms. Terminating hybridization can still produce results of exponential size. We indicate a class of complexes where hybridization is guaranteed to be polynomially bounded.
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The Computer Science of Molecular Programmingience concepts–including abstraction, modularity, state, universality, concurrency, safety, specifications, verification, complexity, and randomness–are contributing to the development of molecular programming.
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Christian Schilcher,Janis Diekmannuages. This work is motivated by the problem of encoding arbitrary data into a set of DNA molecules such that all blocks of length . in these molecules satisfy the constraint . – eg, they can form no stable bonds between them, or they have a desired g-c ratio.
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Der Arbeit wieder ein Maß gebenng to verify that the ripple carry adder executes correctly on a range of inputs. This provides the first opportunity to assess the correctness and kinetic properties of DNA strand displacement systems performing Turing-powerful symbolic computation.
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