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Titlebook: Hydrogen Bond Networks; Marie-Claire Bellissent-Funel,John C. Dore Book 1994 Springer Science+Business Media B.V. 1994 Helium-Atom-Streuun

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The Observation of Different Strengths of H-Bonds in Icesprovided by a series of measurements on different ice structures and on H-defects in a D.O host lattice. The large differences in the force constants between the strong and weak H-bonds in a random network, having a strength ratio of almost 2:1 as required by the model, would affect the physical and chemical properties of ice and water.
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Hydrogen Bonding and Molecular Mobility in Aqueous Systemscle mobility in pure water is comparable to that in simple non-associated liquids. This high translational and rotational mobility in pure water can be further increased by the application of hydrostatic pressure [3, 4] or decreased by the presence of nonpolar groups in solution [5–7].
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The Role of H-Bond in the Formation of Icesses are crucially dependent on the nature of the hydrogen bond. Our observation of the existence of two H-bonds in ices [1] indicates that the true reason for the formation of the large number of ice structures is the existence of a mixture of the strong and weak H-bonds, resulting in a large intern
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Molecular Dynamics on a Water Model with Polarizability and Hyperpolarizabilityn molecular dynamic simulations for dealing with long-range dipolar forces and many-body polarization effects. As an application we have included the normal polarizability together with the first and second hyperpolarizability in a 3-point charge model for water.
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