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The effects of superficial gas velocity, static liquid height, concentrations of acetic acid, solid and antifoam agents on the overall gas holdup were investigated.
The half-height concentration value, K, and (P_{mathrm{max}}) are parameters determined from the data.
The results show that certain rear spoiler configurations produced an increase in mean head-height concentration of over 40% while others reduce the concentration of up to 18%.
The rear spoiler angle of attack is found to have a large influence on head-height concentrations in the vehicular wake.
In vitro dissolution assays demonstrated that all the 3DP DDDs had with different diameters, heights, concentrations of EC and central hole diameters were able to give linear release profiles.
Fractional factorial experiments using polystyrene latex beads were combined with trials using microalgae to determine the relative importance of key design and operational variables (air flow rate, batch run time, foam column height, surfactant concentration, and surfactant type) on the particle concentration factor.
Primer concentrations were determined empirically based on peak height, DNA concentration, and number of cycles in the PCR program.
Moreover, the dependences of adenine peak height on concentration of nucleic acid sample were measured.
In addition, height chlorine concentration in the tank increases the potential of DBP formation and exposes consumers to health risks.
The analytical solutions are compared with experiment data to show that the solutions accurately predict the sediment height and concentration as a function of time and loading conditions.
The NEF value increased with the increasing initial water film height and concentration but decreased with the increasing mass flow rate and flash chamber pressure.
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