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Titlebook: Unconventional Computation and Natural Computation; 17th International C Susan Stepney,Sergey Verlan Conference proceedings 2018 Springer I

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書目名稱Unconventional Computation and Natural Computation
副標(biāo)題17th International C
編輯Susan Stepney,Sergey Verlan
視頻videohttp://file.papertrans.cn/942/941200/941200.mp4
叢書名稱Lecture Notes in Computer Science
圖書封面Titlebook: Unconventional Computation and Natural Computation; 17th International C Susan Stepney,Sergey Verlan Conference proceedings 2018 Springer I
描述This book constitutes the proceedings of the 17th International Conference on Unconventional Computation and Natural Computation, UCNC 2018, held in Fontainebleau, France, in June 2018.?.The 15 full papers presented were carefully reviewed and selected from 22 submissions. The paper cover topics such as hypercomputation; chaos and?dynamical systems based computing; granular, fuzzy and rough computing; mechanical?computing; cellular, evolutionary, molecular, neural, and quantum computing; membrane computing; amorphous computing, swarm intelligence; artificial immune systems; physics of computation; chemical computation; evolving?hardware; the computational nature of self-assembly, developmental processes,?bacterial communication, and brain processes. .
出版日期Conference proceedings 2018
關(guān)鍵詞artificial intelligence; cryptography; Field Programmable Gate Array (FPGA); hardware; logic gates; model
版次1
doihttps://doi.org/10.1007/978-3-319-92435-9
isbn_softcover978-3-319-92434-2
isbn_ebook978-3-319-92435-9Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer International Publishing AG, part of Springer Nature 2018
The information of publication is updating

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P Systems with Activation and Blocking of Rules,rarchical) P systems and the main known derivation modes. Computational completeness can be obtained even with non-cooperative rules and using both activation and blocking of rules, especially for the set modes of derivation. When we allow the application of rules to influence the application of rul
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Thermodynamically Favorable Computation via Tile Self-assembly,heir thermodynamically favorable final states, and ignoring the kinetic pathways through which they evolve. The model was intentionally developed to abstract away not only the notion of time, but also the constraints of geometry. Collections of monomers with binding domains which allow them to form
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Optimal Staged Self-assembly of Linear Assemblies,systems with at most . bins and . tile types, we prove that the minimum number of stages to uniquely assemble a . . is .. Generalizing to . lines, we prove the minimum number of stages is . and ...Next, we consider assembling sets of lines and general shapes using . tile types. We prove that the min
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Computational Completeness of Simple Semi-conditional Insertion-Deletion Systems,he need for many variants on ins-del systems was raised by the computational completeness result of ins-del system with (optimal) size (1,?1,?1;?1,?1,?1). Several regulations like graph-control, matrix and semi-conditional have been imposed on ins-del systems. Typically, computational completeness a
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