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The model can satisfactorily simulate both distortional and volumetric response of sands subjected to non-proportional loading.
It has been shown that the fractional rheological model can satisfactorily describe dynamic behavior of magnetorheological elastomers in magnetic field.
This model can satisfactorily explain the numerical observation in which compressive stress prevails in films in the presence of vacancies.
With consideration of temperature influence on water viscosity and the effective flow cross-sectional area of porous channels, the model can satisfactorily reflect the temperature effects.
Statistical and graphical error analyses demonstrated that the developed model can satisfactorily predict the compressibility factor of natural gases with an average absolute percent relative error of 2.3%.
The model can satisfactorily predict particle growth and particle deposition by diffusional, convective and inertial mechanisms for a wide range of conditions.
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The threshold model can cope satisfactorily with this problem.
The Freundlich isotherm model can be satisfactorily fitted the isotherm data, elucidating that it was a multilayer heterogeneous adsorption.
The model can also satisfactorily describe photosynthesis rates as a function of both PAR and environmental nitrate concentrations.
The same model can also satisfactorily explain the very high measured values of the apparent activation energy.
The model can also satisfactorily correlate data of deacetylation of xylan and formation of products (free acetyl groups and acetyl groups attached to xylooligomers in the hydrolyzate) in the autohydrolysis of sugar maple and aspen wood chips with fair accuracy.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com