299 research outputs found

    Study of Critical Dynamics in Fluid via Molecular Dynamics in Canonical Ensemble

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    With the objective of demonstrating usefulness of thermostats in the study of dynamic critical phenomena in fluids, we present results for transport properties in a binary Lennard-Jones fluid that exhibits liquid-liquid phase transition. Results from the molecular dynamics simulations in canonical ensemble, with various thermostats, are compared with those from microcanonical ensemble. It is observed that the Nos\'{e}-Hoover and dissipative particle dynamics thermostats are useful for the calculations of mutual diffusivity and shear viscosity. The Nos\'{e}-Hoover thermostat, however, appears inadequate for the study of bulk viscosity.Comment: 5 pages, 4 figures in European Physical Journal E 201

    Finite-size Scaling Study of Shear Viscosity Anomaly at Liquid-Liquid Criticality

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    We study equilibrium dynamics of a symmetrical binary Lennard-Jones fluid mixture near its consolute criticality. Molecular dynamics simulation results for shear viscosity, η\eta, from microcanonical ensemble are compared with those from canonical ensemble with various thermostats. It is observed that Nos\'{e}-Hoover thermostat is a good candidate for this purpose and so, is adopted for the quantification of critical singularity of η\eta, to avoid temperature fluctuation (or even drift) that is often encountered in microcanonical simulations. Via finite-size scaling analysis of our simulation data, thus obtained, we have been able to quantify even the weakest anomaly, of all transport properties, that shear viscosity exhibits and confirm the corresponding theoretical prediction.Comment: 6 pages, 6 figure

    Integration Verification in System on Chips Using Formal Techniques

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    Microwave Absorption and Relaxation Processes in Thioanisole in the Liquid State

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    Integration Verification in System on Chips Using Formal Techniques

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