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Titlebook: Computer Simulations of Liquid Crystals and Polymers; Proceedings of the N Paolo Pasini,Claudio Zannoni,Slobodan Žumer Conference proceedin

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Multiscale Simulation of Liquid Crystals, abruptly. Recent experiments have shown that, in addition to their application in displays, liquid crystals permit the detection of ligand-receptor binding by optical amplification. The optimal design of LC-based biosensors requires an understanding of the effects of the presence of biomolecules on
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Regular and Chaotic Rheological Behavior of Tumbling Polymeric Liquid Crystals,rom a closed nonlinear inhomogeneous relaxation equation for the five components of the alignment tensor which, in turn, can be inferred from a generalized Fokker-Planck equation, it has recently been demonstrated (G. Rienäcker, M. Kröger, and S. Hess, Phys. Rev. E ., 040702(R) (2002); Physica A .,
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Conference proceedings 20051st editionrtilization between these connected areas which is particularly apparent for a number of experimental systems like, e.g. polymer liquid crystals and anisotropic gels where the different fields necessarily merge. An effort has been made to assess the possibilities of a coherent description of the the
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Monte Carlo Simulations of Liquids of Mesogenic Oligomers,avoring extended conformations in the nematic liquids. Simulations of model oligomers with conformational properties approximating those of a well characterized series of mesogenic oligoesters are currently underway.
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Molecular Arrangements in Polymer-Nanofiller Systems,tendency of the chain segments to avoid the filler surfaces. This makes possible to study systems that cannot be simulated at full density (i.e. systems with long chains, and/or with large particles and small filling density).
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