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Titlebook: Cellular Automata and Modeling of Complex Physical Systems; Proceedings of the W Paul Manneville,Nino Boccara,Roger Bidaux Conference proce

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書目名稱Cellular Automata and Modeling of Complex Physical Systems
副標題Proceedings of the W
編輯Paul Manneville,Nino Boccara,Roger Bidaux
視頻videohttp://file.papertrans.cn/223/222996/222996.mp4
叢書名稱Springer Proceedings in Physics
圖書封面Titlebook: Cellular Automata and Modeling of Complex Physical Systems; Proceedings of the W Paul Manneville,Nino Boccara,Roger Bidaux Conference proce
描述Cellular automata are fully discrete dynamical systems with dynamical variables defined at the nodes of a lattice and taking values in a finite set. Application of a local transition rule at each lattice site generates the dynamics. The interpretation of systems with a large number of degrees of freedom in terms of lattice gases has received considerable attention recently due to the many applications of this approach, e.g. for simulating fluid flows under nearly realistic conditions, for modeling complex microscopic natural phenomena such as diffusion-reaction or catalysis, and for analysis of pattern-forming systems. The discussion in this book covers aspects of cellular automata theory related to general problems of information theory and statistical physics, lattice gas theory, direct applications, problems arising in the modeling of microscopic physical processes, complex macroscopic behavior (mostly in connection with turbulence), and the design of special-purpose computers.
出版日期Conference proceedings 19891st edition
關鍵詞Computer Science; Diffusion; catalysis; colloid; convection; dynamical systems; entropy; fluid dynamics; kin
版次1
doihttps://doi.org/10.1007/978-3-642-75259-9
isbn_softcover978-3-642-75261-2
isbn_ebook978-3-642-75259-9Series ISSN 0930-8989 Series E-ISSN 1867-4941
issn_series 0930-8989
copyrightSpringer-Verlag Berlin Heidelberg 1989
The information of publication is updating

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Phase Transitions of Two-State Probabilistic Cellular Automata with One Absorbing Phaseto assess the extent to which a simple mean-field approximation of cellular automata (CA) is valid. The focus is put on the order of the transition and the existence of universality classes for space dimensions 1 < . < 4. In particular, our numerical results show significant discrepancies with the c
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Simulating the Ising Model on a Cellular Automatonrmann. Their model works fairly well at high temperature but freezes at low temperature. The Creutz model with localized “demons” is also a CA model but can be suspected to freeze at low temperature..This Creutz model is tested at low temperature and shown to freeze. Two improved versions are fully
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Domain Growth Kinetics: Microscopic Derivation of the t? Law opposite phase, develops at . = 0 according to a dynamic rule that does not allow its perimeter to increase. At long enough times the domain disappears; we have shown that the average lifetime of such a domain is proportional to its area. We also considered the . = 0 dynamics of a single infinite q
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Critical Behavior in Cellular Automata Models of Growthvalue .. of the initial concentration of the state favored by the rule bias [1,2]. In the simplest 2D example, each site of a square lattice updates its internal state (0 or 1) according to the “peer pressure” of its four nearest neighbors. If there is a majority of 0’s the considered site will beco
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