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A numerical model of boundary discretization type was developed to calculate the wave field.
We work our results into a grounded model of boundary organizations as a vehicle for open data initiatives.
The measured ratios of the normal to the lateral motion comply perfectly with the coupling factors of a recently proposed model of boundary motion.
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Our use of body-conforming grids reduces grid anisotropy effects and allows the accurate modeling of boundary conditions.
Static spheroidization kinetics during annealing following warm working were explained in the context of approximate models of boundary splitting and termination migration.
Modelling of boundary conditions and thermo-chemical properties of concrete is designed to accommodate experimentally defined properties and code of practice recommendations, as well as other research results reported in the literature.
This saturation behaviour was interpreted as being a consequence of the anti-correlations between nearby dislocation boundaries and is discussed in terms of recent stochastic models of boundary formation.
Regardless, there still exists a need for more accurate models of boundary measurements.
We also developed a quantitative model of grain boundary grooving coupled with grain boundary interdiffusion in thin bilayer films.
Using the Mullins model of grain boundary grooving and its modifications we estimated that the grain boundary migration rate is 0.52 ± 0.09 μm/s.
Recently Aziz [19] used the model of convective boundary condition for the investigation of Blasius flow.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com