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Titlebook: Computer Simulation Studies in Condensed-Matter Physics IV; Proceedings of the F David P. Landau,K. K. Mon,Heinz-Bernd Schüttler Conference

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Monte Carlo Simulations of Dilute Ising Models controversy between conflicting renormalization group theories, which predict different critical exponents. Evidence for a crossover from the critical behaviour of the perfect model to the dilution-dominated critical regime is found for the three-dimensional model.
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A New Numerical Method to Study Phase Transitionshe finite size scaling properties of free energy barriers between coexisting states. It is demonstrated that the first order transitions in d = 2, q = 5 and d = q = 3 Potts models are easily seen with modest computing time. The method can also be used to obtain quite accurate estimates of critical e
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Fluctuations in a Kinetic Ising Model model, both at equilibrium and for systems undergoing a temperature-quench. It has been suggested that the autocorrelation functions in the low temperature equilibrium ordered phase could be dominated by long-lived droplet fluctuations of the other ordered phase, giving rise to a stretched-exponent
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Special-Purpose Computers for the Random Ising Modelties, such as a random bond model or a random magnetic field model [1]. Results obtained with the computer for the specific heat and magnetization of the random bond model are presented. We also discuss projects for the new special purpose computers.
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Monte Carlo Simulations of Glycoproteins .-terminal glycopeptide derived from glycophorin A. were calculated using the newly developed force field program GEGOP (Geometry of Glycoproteins). The conformation of the C.2 domain with the lowest energy agrees very well with the data found by X-ray crystal structure analysis of the Fc fragment
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