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Advances in Unconventional Computing

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Cover of 'Advances in Unconventional Computing'

Table of Contents

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    Book Overview
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    Chapter 1 Nonuniversality in Computation: Fifteen Misconceptions Rectified
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    Chapter 2 What Is Computable? What Is Feasibly Computable? A Physicist’s Viewpoint
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    Chapter 3 The Ideal Energy of Classical Lattice Dynamics
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    Chapter 4 An Analogue-Digital Model of Computation: Turing Machines with Physical Oracles
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    Chapter 5 Physical and Formal Aspects of Computation: Exploiting Physics for Computation and Exploiting Computation for Physical Purposes
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    Chapter 6 Computing in Perfect Euclidean Frameworks
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    Chapter 7 Unconventional Computers and Unconventional Complexity Measures
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    Chapter 8 Decreasing Complexity in Inductive Computations
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    Chapter 9 Asymptotic Intrinsic Universality and Natural Reprogrammability by Behavioural Emulation
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    Chapter 10 Two Small Universal Reversible Turing Machines
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    Chapter 11 Percolation Transition and Related Phenomena in Terms of Grossone Infinity Computations
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    Chapter 12 Spacetime Computing: Towards Algorithmic Causal Sets with Special-Relativistic Properties
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    Chapter 13 Interaction-Based Programming in MGS
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    Chapter 14 Cellular Automata in Hyperbolic Spaces
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    Chapter 15 A Computation in a Cellular Automaton Collider Rule 110
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    Chapter 16 Quantum Queries Associated with Equi-partitioning of States and Multipartite Relational Encoding Across Space-Time
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    Chapter 17 Solving the Broadcast Time Problem Using a D-wave Quantum Computer
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    Chapter 18 The Group Zoo of Classical Reversible Computing and Quantum Computing
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    Chapter 19 Fault Models in Reversible and Quantum Circuits
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    Chapter 20 A Class of Non-optimum-time FSSP Algorithms
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    Chapter 21 Universality of Asynchronous Circuits Composed of Locally Reversible Elements
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    Chapter 22 Reservoir Computing as a Model for In-Materio Computing
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    Chapter 23 On Reservoir Computing: From Mathematical Foundations to Unconventional Applications
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    Chapter 24 Computational Properties of Cell Regulatory Pathways Through Petri Nets
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    Chapter 25 Kernel P Systems and Stochastic P Systems for Modelling and Formal Verification of Genetic Logic Gates
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    Chapter 26 On Improving the Expressive Power of Chemical Computation
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    Chapter 27 Conventional and Unconventional Approaches to Swarm Logic
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    Chapter 28 On the Inverse Pattern Recognition Problem in the Context of the Time-Series Data Processing with Memristor Networks
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    Chapter 29 Self-Awareness in Digital Systems: Augmenting Self-Modification with Introspection to Create Adaptive, Responsive Circuitry
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    Chapter 30 Looking for Computers in the Biological Cell. After Twenty Years
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    Chapter 31 Unconventional Computing: A Brief Subjective History
Overall attention for this book and its chapters
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19 X users
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1 Wikipedia page

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Title
Advances in Unconventional Computing
Published by
Springer International Publishing, January 2017
DOI 10.1007/978-3-319-33924-5
ISBNs
978-3-31-933923-8, 978-3-31-933924-5
Editors

Andrew Adamatzky

X Demographics

X Demographics

The data shown below were collected from the profiles of 19 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 63 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Iran, Islamic Republic of 1 2%
Unknown 62 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 15 24%
Researcher 14 22%
Student > Master 8 13%
Student > Bachelor 7 11%
Student > Doctoral Student 5 8%
Other 9 14%
Unknown 5 8%
Readers by discipline Count As %
Engineering 14 22%
Physics and Astronomy 13 21%
Computer Science 10 16%
Materials Science 3 5%
Chemical Engineering 3 5%
Other 9 14%
Unknown 11 17%