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DNA computing : 11th International Workshop on DNA Computing, DNA11, London, ON, Canada, June 6-9, 2005 ; revised selected papers

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Cover of 'DNA computing : 11th International Workshop on DNA Computing, DNA11, London, ON, Canada, June 6-9, 2005 ; revised selected papers'

Table of Contents

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    Book Overview
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    Chapter 1 Self-correcting Self-assembly: Growth Models and the Hammersley Process
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    Chapter 2 Recognizing DNA Splicing
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    Chapter 3 On Computational Properties of Template-Guided DNA Recombination
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    Chapter 4 Towards Practical Biomolecular Computers Using Microfluidic Deoxyribozyme Logic Gate Networks
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    Chapter 5 DNA Recombination by XPCR
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    Chapter 6 An Algorithm for SAT Without an Extraction Phase
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    Chapter 7 Sensitivity and Capacity of Microarray Encodings
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    Chapter 8 Simple Operations for Gene Assembly
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    Chapter 9 Counting Time in Computing with Cells
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    Chapter 10 On Bounded Symport/Antiport P Systems
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    Chapter 11 Expectation and Variance of Self-assembled Graph Structures
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    Chapter 12 Hairpin Structures in DNA Words
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    Chapter 13 Efficient Algorithm for Testing Structure Freeness of Finite Set of Biomolecular Sequences
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    Chapter 14 Communicating Distributed H Systems: Optimal Results with Efficient Ways of Communication
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    Chapter 15 Intensive In Vitro Experiments of Implementing and Executing Finite Automata in Test Tube
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    Chapter 16 Development of an In Vivo Computer Based on Escherichia coli
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    Chapter 17 Control of DNA Molecules on a Microscopic Bead Using Optical Techniques for Photonic DNA Memory
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    Chapter 18 Linearizer and Doubler : Two Mappings to Unify Molecular Computing Models Based on DNA Complementarity
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    Chapter 19 Analysis and Simulation of Dynamics in Probabilistic P Systems
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    Chapter 20 Experimental Validation of DNA Sequences for DNA Computing: Use of a SYBR Green I Assay
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    Chapter 21 DNA Computing
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    Chapter 22 Designing Nucleotide Sequences for Computation: A Survey of Constraints
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    Chapter 23 DNA Computing
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    Chapter 24 Complexity of Compact Proofreading for Self-assembled Patterns
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    Chapter 25 A Microfluidic Device for DNA Tile Self-assembly
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    Chapter 26 Photo- and Thermoregulation of DNA Nanomachines
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    Chapter 27 Chain Reaction Systems Based on Loop Dissociation of DNA
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    Chapter 28 A Local Search Based Barrier Height Estimation Algorithm for DNA Molecular Transitions
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    Chapter 29 Specificity of Hybridization Between DNA Sequences Based on Free Energy
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    Chapter 30 A Poor Man’s Microfluidic DNA Computer
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    Chapter 31 Two Proteins for the Price of One: The Design of Maximally Compressed Coding Sequences
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    Chapter 32 DNA Computing
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    Chapter 33 Use of DNA Nanodevices in Modulating the Mechanical Properties of Polyacrylamide Gels
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    Chapter 34 Molecular Learning of wDNF Formulae
Attention for Chapter 1: Self-correcting Self-assembly: Growth Models and the Hammersley Process
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Chapter title
Self-correcting Self-assembly: Growth Models and the Hammersley Process
Chapter number 1
Book title
DNA Computing
Published by
Springer, Berlin, Heidelberg, June 2005
DOI 10.1007/11753681_1
Book ISBNs
978-3-54-034161-1, 978-3-54-034165-9

Yuliy Baryshnikov, Ed Coffman, Nadrian Seeman, Teddy Yimwadsana, Baryshnikov, Yuliy, Coffman, Ed, Seeman, Nadrian, Yimwadsana, Teddy

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 4 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 4 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 1 25%
Professor 1 25%
Student > Doctoral Student 1 25%
Unknown 1 25%
Readers by discipline Count As %
Arts and Humanities 1 25%
Mathematics 1 25%
Computer Science 1 25%
Agricultural and Biological Sciences 1 25%