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The model could describe the experimentally observed absorption rates satisfactorily.
The proposed kinetic models proved to predict mixture reaction rates satisfactorily.
The observed strong dependence of the room temperature SRS of niobium on its dislocation density and on the strain rate are satisfactorily explained by the relative contributions of the Peierls stress and the dislocation density hardening to the flow stress of the samples.
Even with this dedicated method, the rate of satisfactorily converted samples was much lower for FFPE than for frozen samples.
We also find that using a one-dimensional premixed laminar flame model incorporating finite-rate chemistry, satisfactorily predicts properties such as the temperature, CO, OH, and NO concentrations at the inner flame.
In the ANFIS testing process, models predicted both recovery and flotation rate constant quite satisfactorily.
Reaction rate ratios are satisfactorily calculated, as well as the flux spectrum and reaction rate traverses.
The experimental rate data agrees satisfactorily with the proposed mechanism based on the above considerations.
The pseudo-second-order reaction rate model demonstrates satisfactorily the depicted kinetics of sorption of lead with high correlation coefficient (R 2 = 0.999).
Unfortunately, the detection rate did not satisfactorily reach to a sufficiently high accuracy level, thus implying that features directly selected from the raw EEG sample data might be inadequate for such a detection problem.
Finally, in the second case (grains initially free of solute) we predict satisfactorily sorption rate curves, as well as the dependence of the transfer rate on the initial concentration, using results obtained in the self-diffusion case.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com