Symmetry and Complexity 2019
Symmetry and complexity are studied by a selection of outstanding papers ranging from pure Mathematics and Physics to Computer Science and Engineering applications. In this Special Issue, the authors give a short but intensive description of the many applications of the basic structure of symmetry a...
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Format: | Electronic Book Chapter |
Language: | English |
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Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2020
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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520 | |a Symmetry and complexity are studied by a selection of outstanding papers ranging from pure Mathematics and Physics to Computer Science and Engineering applications. In this Special Issue, the authors give a short but intensive description of the many applications of the basic structure of symmetry and complexity in many fields. Some interesting results were given in the Hydrodynamic Analysis of 3-D Hydrofoil and Marine Propeller and in the SAT Problems. The Study on Hypergraph Representations of Complex Fuzzy Information shows the importance of methods based on symmetry and complexity. A deep study of Information Technology Services in Public Organizations has been given in this issue, together with some interesting papers dealing with Adaptive Block Truncation Coding Based on an Edge-Based Quantization, SIR Model in a Patchy Environment, and the Evolution of Conformity Dynamics in Complex Social Networks. Another interesting paper provides some new insights into the Novel Computational Technique for Impulsive Fractional Differential Equations. In this collection, An Intelligent Approach for Handling Complexity by Migrating from Conventional Databases to Big Data shows the importance of such topics related to complexity. | ||
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653 | |a sweptback hydrofoil | ||
653 | |a surface panel method | ||
653 | |a fractional derivative | ||
653 | |a Adomian method | ||
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653 | |a scale-free network | ||
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653 | |a Metzler matrix | ||
653 | |a disease transition and transmission matrices | ||
653 | |a decentralized control | ||
653 | |a disease-free and endemic equilibrium points | ||
653 | |a Moore-Penrose pseudoinverse | ||
653 | |a next generation matrix | ||
653 | |a patchy environment | ||
653 | |a vaccination controls | ||
653 | |a numerical inverse Laplace transform | ||
653 | |a orthonormalized Bernstein polynomials | ||
653 | |a operational matrices | ||
653 | |a fractional differential equations | ||
653 | |a BTC | ||
653 | |a edge-based quantization | ||
653 | |a reversible data hiding | ||
653 | |a histogram shifting technique | ||
653 | |a directional hölder regularity | ||
653 | |a anisotropic hölder regularity | ||
653 | |a directional scaling function | ||
653 | |a anisotropic scaling function | ||
653 | |a directional multifractal formalism | ||
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653 | |a sierpinski cascade functions | ||
653 | |a fractional brownian sheets | ||
653 | |a nonlinear equations | ||
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653 | |a complex q-rung orthopair fuzzy graphs | ||
653 | |a complex q-rung orthopair fuzzy hypergraphs | ||
653 | |a transversals | ||
653 | |a SAT problem | ||
653 | |a membrane computing | ||
653 | |a P system | ||
653 | |a splitting rule | ||
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856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/69190 |7 0 |z DOAB: description of the publication |