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This simulation has been performed 10,000 times and the results are summarised here.
This simulation has 15 video groups in the system, and each group averages 20 users.
This simulation has been tested within a 100 × 100 m2 area.
This simulation has been prepared with S = 100, Doppler bin (−1,0,1) and k = 50.
This simulation has been carried out for a plant with a treatment capacity of 2 m3/h of diluted wastewater.
This simulation has shown that the zonal component of the electric field has a significant effect on the phase of the descending Es layers.
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Finally, the results of this simulation have been compared with the industrial data taken from the existing ammonia unit in the State Company of Fertilizers South Region in the Basra/Iraq, which show a relatively good compatibility.
The results obtained from this simulation have been used to: tune the laboratory set-up for better monitoring of the displacement process via CO2 gravity drainage, and study oil-recovery efficiency by gravity drainage under CO2 injection.
Thus, this simulation had six free parameters: MZ width and length (sampled such that total MZ cell number was no more than 2000), and distal cell cycle length for each developmental stage.
When grown on glucose and acetate, we found that maximizing the specific growth rate led to the formation of acetone and butyrate only; this simulation had a predicted hydrogen production rate of about 18 mmol/gDW/hr.
In this section, the simulation has been described in details.
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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