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This peculiar behavior is explained using phase-field simulations with prescribed geometries and with the development of a simple analytic model.
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This behavior was explained using the first-principle calculation in which water molecules stacked onto the GO film, resulting in a lower local work function and ripples of the surface potential.
The adsorption behavior of nanoparticles is explained using the potential of mean force analysis.
The fracture behavior in sandwich core is explained using independent experimental results obtained from monotonically graded foam sheets.
The concentration effect on the swelling behavior of GMZ01 bentonite was explained using the concept of osmotic suction for specimens initially infiltrated with NaCl solutions.
The EFE behavior of the materials was explained using Fowler-Nordheim (F-N) theory [34].
This growth behavior of WC grains could be explained using growth theories of faceted crystals and was also confirmed by a calculation using their growth equations.
In this work, it is shown that without any simplifying assumption, two equivalent length scale parameters can be defined for functionally graded bars and the size-dependent mechanical behavior of these components can be explained using these parameters.
The corrosion behavior of the PEO-coated sample could be explained using the equivalent circuit model.
Here evidence is provided that behavior of the Pur-Lac system can be explained using standard mutation rates measured during nonselective growth.
However, differences in the behavior are pointed out in the crack patterns and can be explained using numerical modeling.
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