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DNA Computing [electronic resource] : 14th International Meeting on DNA Computing, DNA 14, Prague, Czech Republic, June 2-9, 2008. Revised Selected Papers /

Contributor(s): Material type: TextTextSeries: Theoretical Computer Science and General Issues ; 5347Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2009Edition: 1st ed. 2009Description: X, 191 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783642030765
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 570.285 23
  • 570.113 23
LOC classification:
  • QH324.2-324.25
Online resources:
Contents:
Experimental Validation of Signal Dependent Operation in Whiplash PCR -- Towards DNA Comparator: The Machine That Compares DNA Concentrations -- Construction of Photon-Fueled DNA Nanomachines by Tethering Azobenzenes as Engines -- Operon Structure Optimization by Random Self-assembly -- Isothermal Reactivating Whiplash PCR for Locally Programmable Molecular Computation -- DNA as a Universal Substrate for Chemical Kinetics -- A Simple DNA Gate Motif for Synthesizing Large-Scale Circuits -- Tiamat: A Three-Dimensional Editing Tool for Complex DNA Structures -- Connecting the Dots: Molecular Machinery for Distributed Robotics -- Polyomino-Safe DNA Self-assembly via Block Replacement -- Robust Self-assembly of Graphs -- Time Optimal Self-assembly for 2D and 3D Shapes: The Case of Squares and Cubes -- Self-assembly of Discrete Self-similar Fractals -- Speeding Up Local-Search Type Algorithms for Designing DNA Sequences under Thermodynamical Constraints -- Sequentiality Induced by Spike Number in SNP Systems.
In: Springer Nature eBook
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Experimental Validation of Signal Dependent Operation in Whiplash PCR -- Towards DNA Comparator: The Machine That Compares DNA Concentrations -- Construction of Photon-Fueled DNA Nanomachines by Tethering Azobenzenes as Engines -- Operon Structure Optimization by Random Self-assembly -- Isothermal Reactivating Whiplash PCR for Locally Programmable Molecular Computation -- DNA as a Universal Substrate for Chemical Kinetics -- A Simple DNA Gate Motif for Synthesizing Large-Scale Circuits -- Tiamat: A Three-Dimensional Editing Tool for Complex DNA Structures -- Connecting the Dots: Molecular Machinery for Distributed Robotics -- Polyomino-Safe DNA Self-assembly via Block Replacement -- Robust Self-assembly of Graphs -- Time Optimal Self-assembly for 2D and 3D Shapes: The Case of Squares and Cubes -- Self-assembly of Discrete Self-similar Fractals -- Speeding Up Local-Search Type Algorithms for Designing DNA Sequences under Thermodynamical Constraints -- Sequentiality Induced by Spike Number in SNP Systems.

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