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In general, the developed model well describes the nitrogen loss into surface runoff in a raindrop driven process.
The results showed a good agreement between the two approaches, indicating that the model well describes the behavior of the unit.
The simplified model well describes the experimental calorimetric conversion versus time data for isothermal bulk methyl methacrylate polymerization, capturing autoacceleration and the dependence of the limiting conversion on temperature.
As already mentioned this model well describes a congested traffic.
It has been proven in [18, 19] that the first-order Gauss-Markov process model well describes relatively small delays in the communication systems.
The developed model well describes obtained experimental results and allows us to visualize physical mechanisms including heating of electron gas, multiphoton photoionization, and the space charge formation, which are responsible for the observed phenomena.
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The pseudo-second-order rate model well described the biosorption kinetics.
A pseudo second order model well described the tendency for As removal.
The mathematic model well described the performance of CO oxidation at high relative humidity.
The model well described SOC changes for each farm type and offered valuable insights about the factors affecting SOC losses and C sequestration.
This water activity-corrected model well described the ionic strength effect on binary Cs+ exchange, and was extended to the ternary exchange system of Cs+ Na+ K+ on the pristine sediment.
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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