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DNA computing

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  • 190 Seiten
  • 7 Lesestunden

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InhaltsverzeichnisExperimental 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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DNA computing, Ashish Goel

Sprache
Erscheinungsdatum
2009
Einband
(Paperback)
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Titel
DNA computing
Sprache
Englisch
Autor*innen
Ashish Goel
Verlag
Springer
Erscheinungsdatum
2009
Einband
Paperback
Seitenzahl
190
ISBN10
3642030750
ISBN13
9783642030758
Reihe
Bewertung
4 von 5 Sternen
Beschreibung
InhaltsverzeichnisExperimental 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.