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DNA Computing

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Cover of 'DNA Computing'

Table of Contents

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    Book Overview
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    Chapter 1 Self-assembling DNA Graphs
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    Chapter 2 DNA Nanotubes: Construction and Characterization of Filaments Composed of TX-tile Lattice
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    Chapter 3 The Design of Autonomous DNA Nanomechanical Devices: Walking and Rolling DNA
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    Chapter 4 Cascading Whiplash PCR with a Nicking Enzyme
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    Chapter 5 A PNA-mediated Whiplash PCR-based Program for In Vitro Protein Evolution
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    Chapter 6 Engineering Signal Processing in Cells: Towards Molecular Concentration Band Detection
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    Chapter 7 Temperature Gradient-Based DNA Computing for Graph Problems with Weighted Edges
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    Chapter 8 Shortening the Computational Time of the Fluorescent DNA Computing
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    Chapter 9 How Efficiently Can Room at the Bottom Be Traded Away for Speed at the Top?
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    Chapter 10 Hierarchical DNA Memory Based on Nested PCR
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    Chapter 11 Binary Arithmetic for DNA Computers
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    Chapter 12 Implementation of a Random Walk Method for Solving 3-SAT on Circular DNA Molecules
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    Chapter 13 Version Space Learning with DNA Molecules
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    Chapter 14 DNA Implementation of Theorem Proving with Resolution Refutation in Propositional Logic
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    Chapter 15 Universal Biochip Readout of Directed Hamiltonian Path Problems
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    Chapter 16 Algorithms for Testing That Sets of DNA Words Concatenate without Secondary Structure
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    Chapter 17 A PCR-based Protocol for In Vitro Selection of Non-crosshybridizing Oligonucleotides
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    Chapter 18 On Template Method for DNA Sequence Design
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    Chapter 19 From RNA Secondary Structure to Coding Theory: A Combinatorial Approach
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    Chapter 20 Stochastic Local Search Algorithms for DNA Word Design
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    Chapter 21 NACST/Seq: A Sequence Design System with Multiobjective Optimization
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    Chapter 22 A Software Tool for Generating Non-crosshybridizing Libraries of DNA Oligonucleotides
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    Chapter 23 Splicing Systems: Regularity and Below
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    Chapter 24 On the Computational Power of Insertion-Deletion Systems
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    Chapter 25 Unexpected Universality Results for Three Classes of P Systems with Symport/Antiport
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    Chapter 26 Conformons-P Systems
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    Chapter 27 Parallel Rewriting P Systems with Deadlock
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    Chapter 28 A DNA-based Computational Model Using a Specific Type of Restriction Enzyme
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    Chapter 29 Time-Varying Distributed H Systems of Degree 2 Can Carry Out Parallel Computations
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Title
DNA Computing
Published by
Springer Science & Business Media, February 2003
DOI 10.1007/3-540-36440-4
ISBNs
978-3-54-000531-5, 978-3-54-036440-5
Editors

Hagiya, Masami, Ohuchi, Azuma

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X Demographics

The data shown below were collected from the profiles of 2 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
India 1 9%
Unknown 10 91%

Demographic breakdown

Readers by professional status Count As %
Professor 1 9%
Student > Ph. D. Student 1 9%
Unknown 9 82%
Readers by discipline Count As %
Engineering 2 18%
Unknown 9 82%