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Box-Behnken design to model the experimental results was used.
The nonlinear diffusion model was applied to model the experimental data.
A simple electrical equivalent circuit (EEC) has been proposed to model the experimental data.
Another possible approach is to model the experimental situation in respect to the local slip s.
For evaluating the model, the experimental values of the responses were compared with the corresponding predicted values.
With the model the experimental flux-rejection curves can be fitted reasonably well.
To model the experimental results, a Monte Carlo simulator has been established and the simulated results are fully in consistency with those of the experiment.
The final simulation tool that was considered and subsequently selected to model the experimental data was the STARS simulator by CMG.
In this article, the authors considered the Loo distribution to model the experimental data and defined three states named "LOS", "heavy shadow" and "light shadow" in different environments.
Linear expressions for the binary interaction parameters as function of alkane RTc/Pc was used to model the experimental data.
Following this theoretical model, the experimental phenomenon of increase of natural frequency is successfully simulated in theory.
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