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Numerical calculations based on a detailed chemical kinetic model are able to capture these various trends and show good qualitative agreement with the experimental results.
Simulations based on this model are able to reproduce both phase nucleation in the metastable composition region and spontaneous phase decomposition and coarsening within the spinodal composition region.
Multiphase simulations with the non-Newtonian Herschel Bulkley viscosity model are able to predict the medium segregation close to the gamma ray tomography data, and the predicted medium viscosity levels are increased up to 18 cp.
This method allows us to check whether the operations defined as part of the behavioural model are able to be executed without breaking the integrity of the structural model and returns a meaningful feedback that helps repairing the detected inconsistencies.
At low flow rates the single stage model and at high flow rates the two stage model are able to predict the drop volume during its formation from tip of capillary.
The CFD simulation and the parameter derivation, combined with a semi-empirical model, are able to predict the corrosion rate of steels in CO2-saturated oil-water emulsion flow.
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This model is able to accurately describe the reaction progress.
The model was able to predict well the experimental results.
The fuzzy model was able to represent very well.
The model was able to simulate the experimental performance.
The model was able to explain 72% of the total deviance in herbivore density.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com