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This goes in line with previously published findings reporting that ionic sGAG-FN interactions are reversible under physiological conditions and that surface diffusion and frequent un- and re-binding events enable one sGAG chain to interact with multiple FN molecules44.
Coupled grain-boundary diffusion, surface diffusion and grain-boundary migration are considered as the underlying mechanisms for the evolution.
Coupled grain-boundary diffusion, surface diffusion and grain-boundary migration are assumed as the underlying mechanisms for the microstructural evolution.
Surface diffusion and grain-boundary grooving are neglected in the present analysis.
Migration of B from α to B proceeds both by surface diffusion and gas phase transport.
Pore mobility is realized by surface diffusion and boundaries migrate owing to surface tension.
Chloride additives enhance the surface diffusion and respective morphologies are observed earlier.
The primary reason was self-annealing effect which occurred during film deposition and was crucial factor towards surface diffusion and film crystallinity.
The model accounts for the concentration dependence of surface diffusion, and uses the Langmuir isotherm to describe the adsorption equilibria.
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This functional consists of the term |Î" h| 2, which represents the surface diffusion, and-log (1 + |∇ h| 2), which describes the effect of kinetic asymmetry in the adatom attachment-detachment.
This functional consists of the term |Δ h|2, which represents the surface diffusion, and-log (1 + |∇ h|2), which describes the effect of kinetic asymmetry in the adatom attachment-detachment.
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