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Forces acting on suspended wires during release are calculated.
For so doing, the hole sizes from secondary grade sources of release are calculated for a gas dehydration and dew point control of natural gas unit by means of EI15 approach for risk calculation.
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The average percentage release was calculated from the three experiments.
A formulation that maximizes packaging properties and minimizes carvacrol release was calculated by using RSM.
The cumulative release was calculated as follows [33]: mathrm{Cumulative} mathrm{release} left(%right) = {R}_t/ D times 100%.
LDH release was calculated using the following formula: Total LDH release % = ( ( BC absorbance − NC absorbance ) ÷ ( PC absorbance − NC absorbance ) ) × 100%%.
Percentage of indomethacin release was calculated based on the ratio of drug release at each release time and initial drug content in the nanoparticles.
The cumulative drug release was calculated by the following function: Cumulative release = C Outside dialysis bag × 500 mL C Inside dialysis bag × 3 mL × 100%%.
The NRMSE values (Eq. 2), which describe the difference between simulated and measured ion release, were calculated for Al, Ca, Fe, Mn, and Si.
J release was calculated as the difference between the J 2 and the simulated J PMCA at different time points after BHQ application.
The flames were experimentally and numerically studied in a counterflow configuration, and the heat release was calculated from simulations involving detailed chemistry.
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