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Unconventional Computation and Natural Computation

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Cover of 'Unconventional Computation and Natural Computation'

Table of Contents

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    Book Overview
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    Chapter 1 Five Nodes Are Sufficient for Hybrid Networks of Evolutionary Processors to Be Computationally Complete
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    Chapter 2 Learning Two-Input Linear and Nonlinear Analog Functions with a Simple Chemical System
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    Chapter 3 Scaled Tree Fractals Do not Strictly Self-assemble
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    Chapter 4 GUBS a Language for Synthetic Biology: Specification and Compilation
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    Chapter 5 Modeling Syntactic Complexity with P Systems: A Preview
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    Chapter 6 Simulating Cancer Growth Using Cellular Automata to Detect Combination Drug Targets
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    Chapter 7 Towards an MP Model for B Lymphocytes Maturation
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    Chapter 8 Pseudo-inversion on Formal Languages
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    Chapter 9 Reverse-Engineering Nonlinear Analog Circuits with Evolutionary Computation
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    Chapter 10 Steps toward Developing an Artificial Cell Signaling Model Applied to Distributed Fault Detection
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    Chapter 11 Dynamic Adaptive Neural Network Array
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    Chapter 12 Producibility in Hierarchical Self-assembly
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    Chapter 13 Unconventional Arithmetic: A System for Computation Using Action Potentials
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    Chapter 14 Reservoir Computing Approach to Robust Computation Using Unreliable Nanoscale Networks
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    Chapter 15 On DNA-Based Gellular Automata
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    Chapter 16 Doubles and Negatives are Positive (in Self-assembly)
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    Chapter 17 On String Languages Generated by Sequential Spiking Neural P Systems Based on Maximum Spike Number
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    Chapter 18 Languages Associated with Crystallographic Symmetry
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    Chapter 19 An Energy-Efficient Computing Approach by Filling the Connectome Gap
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    Chapter 20 Fast Arithmetic in Algorithmic Self-assembly
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    Chapter 21 Pattern Formation by Spatially Organized Approximate Majority Reactions
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    Chapter 22 Mecobo: A Hardware and Software Platform for In Materio Evolution
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    Chapter 23 Compact Realization of Reversible Turing Machines by 2-State Reversible Logic Elements
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    Chapter 24 Universal Computation in the Prisoner’s Dilemma Game
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    Chapter 25 Exact Simulation of One-Dimensional Chaotic Dynamical Systems Using Algebraic Numbers
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    Chapter 26 Artificial Astrocyte Networks, as Components in Artificial Neural Networks
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    Chapter 27 Quantum, Stochastic, and Pseudo Stochastic Languages with Few States
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    Chapter 28 Phase Transition and Strong Predictability
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    Chapter 29 PHLOGON: PHase-based LOGic using Oscillatory Nano-systems
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    Chapter 30 Size-Separable Tile Self-assembly: A Tight Bound for Temperature-1 Mismatch-Free Systems
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    Chapter 31 Development of Physical Super-Turing Analog Hardware
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Chapter title
Unconventional Arithmetic: A System for Computation Using Action Potentials
Chapter number 13
Book title
Unconventional Computation and Natural Computation
Published by
Springer, Cham, July 2014
DOI 10.1007/978-3-319-08123-6_13
Book ISBNs
978-3-31-908122-9, 978-3-31-908123-6
Authors

Jonathan Edwards, Simon O’Keefe, William D. Henderson, Edwards, Jonathan, O’Keefe, Simon, Henderson, William D.

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The data shown below were collected from the profile of 1 X user 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 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Lecturer 1 100%
Other 1 100%
Readers by discipline Count As %
Computer Science 2 200%