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* p values for paired t tests in comparison with the baseline values ** p values for two-sample t tests between the withering group and the ball-rolling group † FVC forced vital capacity, FEV1 1-second forced expiratory volume, MMF maximal mid-expiratory flow rate The amount and size of dusts are two important factors of the respiratory effects of tea dusts.
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The increasing of the flow rate increases the amount of solvent passing through the raw material per unit of time and decreases the mass transfer resistance allowing the saturation of the solvent.
The influences of the sub-channel flow rate (SFR, the amount of air from the sub-channel inlet as a percentage of the total cathode flow rate) and the inlet positions (SIP, where the sub-channel inlets were placed along the cathode channel) on fuel cell performance were numerically evaluated using a three-dimensional, two-phase fuel cell model.
The non-uniform degree decreases with the increasing of the circulation flow rate and the amount of added solid particles.
The goal function is then parameterized by the blood pressure, the volumetric flow rate, and the amount of elastin.
In addition, it was proved that many factors are important for deposition kinetics, including the accumulated barium ion amount, the initial flow rate, the initial barium concentration and the deposition time.
To achieve this aim, this research focused on determining the flow field pattern, water velocity values, pressure distribution, turbulence effects, volume flow rate and the amount of power that could be captured with respect to varying geometrical parameters of the deploying nozzles; also, these included the effects of the free surface.
Because the enzyme activity was closely related with H2O2 concentration in the reaction solution, the first BBD of RSM included the FBA as well as the concentration, flow rate, and amount of H2O2 (Additional file 3), while the other BBD of RSM included the water/material ratio and reaction temperature as well as the temperature and time of CS pretreatment (Additional file 4).
When the flow rate was increased, the amount of water in the condenser also increased that caused the reduction of the effectiveness.
On the other hand, increasing the gas flow rate dramatically raises the amount of natural condensate in the gas outlet of Cases 4 and 5.
The dynamic behavior of the biosorption column was investigated through experiments and the influence of operating conditions, such as initial chromium concentration, flow rate and amount of biosorbent, on the column removal capacity have been analyzed using the factorial design methodology.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com