Theory of Algorithmic Self-Assembly.

The article explores algorithmic self-assembly, or systems that can automate a series of growth tasks related to the machine's own growth. It focuses on the application of this theory to nanoscience and automating the growth of molecular structures, as the author notes that nanoscience justifies the...

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Publicado en:Communications of the ACM Vol. 55; no. 12; pp. 78 - 89
Autor principal: Doty, David
Formato: Artículo
Publicado: Association for Computing Machinery Dec2012
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        au: Doty, David
        affil: Computing Innovation Fellow and Postdoctoral Scholar, Department of Computing and Mathematical Sciences, California Institute of Technology, Pasadena
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        Algorithm research
        Molecular self-assembly
        Nanoscience
        Molecular structure
        Molecular computers
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          Algorithm research
          Molecular self-assembly
          Nanoscience
          Molecular structure
          Molecular computers
      ab: The article explores algorithmic self-assembly, or systems that can automate a series of growth tasks related to the machine's own growth. It focuses on the application of this theory to nanoscience and automating the growth of molecular structures, as the author notes that nanoscience justifies the study of computation. Information is provided on molecular computing, research into DNA (deoxyribonucleic acid), and the abstract Tile Assembly Model (aTAM), combinatorial model of the dynamic behavior of DNA tiles.
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    language: English
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