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Self-organized patterning

In all these cases, regular patterns of self-organization are realized without any externally imposed rules. There are complex self-organization patterns, but localized organization centers cannot be established anywhere. [Pg.124]

Sankararaman, S., Menon, G. I., and Kumar, P. B. S. (2004). Self-organized pattern formation in motor-microtubule mixtures. Phys. Rev., 70, 31904-18. [Pg.293]

Mixed Mode Electrophysiological Self-Organizing Patterns in Ellipsoidal Systems" (in preparation). [Pg.212]

Self-Organized Pattern of DBD Microdischarges due to Streamer Interaction... [Pg.168]

Sumaru K, Inui S, Yamanaka T. 1999. Preliminary investigation of self organization pattern mapping system based on photochromism. Opt Eng 38(2) 274 283. [Pg.42]

Poly(ferrocenylsilane) polyions are readily processed to novel, fully organometallic multilayer thin films. Furthermore, these organometaUic polyions, featuring a hydrophobic backbone, enable one to make use of both electrostatic and hydrophobic interactions to fabricate self-organized patterns on templated substrates, with potential applications as aqueous pro-cessable ultrathin etch resists. [Pg.114]

In the context of particle-particle interaction (the final point in the above Ust), it has been reported that subsequently to the accumulation of material at the outer rim capillarity, mediated interaction can drive the particles into regular assemblies [5]. These self-organized patterns vary from the previously discussed coffee rings built up from particle monolayers for relatively low initial particle concentrations to plane crystal multilayers for higher particle volume fractions. Large, highly regular arrays of complex... [Pg.665]

The third predominant issue refers to whether the active site and its environment can be treated statically or whether one must follow their dynamics. Interesting physical effects and phenomena can arise from the coupling of the surface mobility along with intrinsic chemical reactivity which include kinetic oscillations and self organized pattern formation under particular catalytic conditions. As an organizing principle for the chapter, we use the concepts outlined above, and for this reason, different catalytic systems will be discussed imder the same headings. [Pg.20]

By measuring particular temperature it becomes clear that we do not live in a thermostatic equilibrium. Instead we reside in an obvious disequilibrium. This can be also witnessed in a series of a self-organized patterns and processes lying evidently outside the traditional concept of equilibrium. It links with a delicate interplay between chance and necessity, order and chaos as well as amid fluctuation and deterministic laws and it is always under subtle interactions between mass flows and heat flows. The idea of equilibrium is also reflected in our gradual development of the understanding of our Universe, which has progressed from a static view up to the present complex world of novelty and diversity, the description of which is also a modest aim of this book. [Pg.33]


See other pages where Self-organized patterning is mentioned: [Pg.144]    [Pg.784]    [Pg.104]    [Pg.784]    [Pg.202]    [Pg.136]    [Pg.138]    [Pg.97]    [Pg.285]    [Pg.414]    [Pg.25]    [Pg.4404]    [Pg.37]    [Pg.204]    [Pg.71]    [Pg.348]    [Pg.95]    [Pg.110]    [Pg.422]    [Pg.767]    [Pg.218]    [Pg.274]    [Pg.447]    [Pg.448]   
See also in sourсe #XX -- [ Pg.218 ]




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Organic self-organizing

Self-Organization of Materials Into Microscale Patterns by Using Dissipative Structures

Self-Organized Pattern of DBD Microdischarges due to Streamer Interaction

Self-organizing

Thin self-organized patterning

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