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Titlebook: Membrane Computing; 13th International C Erzsébet Csuhaj-Varjú,Marian Gheorghe,György Vaszi Conference proceedings 2013 Springer-Verlag Ber

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The Efficiency of Tissue P Systems with Cell Separation Relies on the Environmentrarily large amount of copies. These objects are shared in a distinguished place of the system, called the .. This ability of having infinitely many copies of some objects has been widely exploited in the design of efficient solutions to computationally hard problems by means of tissue P systems..Th
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Membranes with Boundariesheory gives a plausible opportunity to model boundary zones around cell-like formations. However, this theory works within conventional set theory, and so to apply its ideas to membrane computing, first, we have worked out an adequate approximation framework for multisets. Next, we propose a two–com
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(Tissue) P Systems with Decaying Objectsd for the rules than in the case of non-decaying objects, e.g., permitting and/or forbidden contexts. As special variants of P systems, catalytic P systems, P systems using cooperative rules, and spiking neural P systems are investigated.
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Maintenance of Chronobiological Information by P System Mediated Assembly of Control Units for Oscil assembly of a set of chemical control units. To this end, we identify a collection of core oscillators responsible for sinusoidal, spiking, and plated waveforms along with pass filters, switches, and modulators. Considering these units as genotypic elementary components, we utilise P system control
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