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Titlebook: Self-Organization in Electrochemical Systems II; Spatiotemporal Patte Marek Orlik Book 2012 Springer-Verlag Berlin Heidelberg 2012 Bénard-M

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Theoretical Background of Spatial and Spatiotemporal Patterns in Dynamical Systems,inematic, and trigger ones are distinguished. The formation of spatiotemporal patterns in excitable chemical media, in which local coupling of different sites of the reaction medium occurs through diffusion, is described. General principles of linear stability analysis of the spatially extended syst
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Experimental and Model Spatiotemporal and Spatial Patterns in Electrochemical Systems,f the impulse along the neuron, and spiral waves of codeposited Ag–Sb alloy are invoked as the introduction. Following theory of dissipative spatiotemporal and spatial patterns in the reaction–migration electrochemical systems, outlined in Sect. 1.2 and briefly reminded here, representative experime
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Spatial and Spatiotemporal Patterns in Anodized Semiconductors, the present chapter emphasizes the role of spatiotemporal dynamic instabilities in these phenomena. Accordingly, the oscillatory dissolution of silicon in fluoride media is analyzed in terms of present models of this process, based on the inhomogeneous distribution of silicon oxide layer and the dy
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Convection as a Source of Self-Organization in Electrochemical Systems,ingerprint-like patterns, and hexagonal patterns—for different driving forces. The classical Bénard–Rayleigh instability, caused by density gradient induced by thermal gradient, including the definition of dimensionless Rayleigh number, is described. The difference in stability between the horizonta
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1865-1836 econd of two volumes dedicated to this topic.Clear presentatThis is the second of two volumes offering the very first comprehensive treatise of self-organization  and non-linear dynamics in electrochemical systems. The first volume covers general principles of self-organization as well as temporal i
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Book 2012ems. The first volume covers general principles of self-organization as well as temporal instabilities. .The  content of both volumes is  organized  so  that each description  of a particular electrochemical  system  is  preceded  by  an  introduction  to basic concepts of nonlinear dynamics, in ord
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