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Showing 1 to 3 of 3 for “"liquid-glass transition"”.

  1. A Random First Order Theory of Liquid -Glass Transition

    … is believed that all classical fluids could form glasses if cooled sufficiently fast so as to avoid crystallization. Various phenomena including violation of the usual Arrhenius law, stretched relaxations, deviations from the Stokes-Einstein relation in hydrodynamics, and aging have been observed …

    uiuc Repository record for A Random First Order Theory of Liquid -Glass Transition (opens in a new tab)

  2. A Random first order theory of liquid-glass transition

    … is believed that all classical fluids could form glasses if cooled sufficiently fast so as to avoid crystallization. Various phenomena including violation of the usual Arrhenius law, stretched relaxations, deviations from the Stokes-Einstein relation in hydrodynamics, and aging have been observed …

    uiuc Repository record for A Random first order theory of liquid-glass transition (opens in a new tab)

  3. Study of atomic scale dynamics of glass-forming metallic liquids using neutron scattering experiments and molecular dynamics simulations

    Bulk metallic glasses are not the archetypal glass-former due to their large propensity for crystallization. They are characterized by complex multi-body interactions; yet have a simple structure that lacks internal degrees of freedom usually present in prototypical network or molecular …

    uiuc Repository record for Study of atomic scale dynamics of glass-forming metallic liquids using neutron scattering experiments and molecular dynamics simulations (opens in a new tab)