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Cloud chemistry can vary as a function of drop size.
The model can predict the variations of shape and contact angle of drops as a function of drop volume.
The models, with the resulting parameter values, were then used in design mode to determine column dimensions as a function of drop size.
In this work, a theoretical model is developed that predicts axisymmetric, equilibrium drop locations and shapes on conical, solid surfaces as a function of drop volume, needle geometry/shape, needle surface wettability (contact angle), liquid surface tension, line tension, and gravity.
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Experimental data from batch vessels on cumulative volumetric drop-size distributions at various times are shown to yield useful information on probabilities of droplet-breakup as a function of drop-size.
The mechanical response of particle-laden fluid interfaces is determined by measuring the internal pressures of particle-coated drops as a function of the drop volume.
Finally, Professor Saltzman describes glomerular filtration rate as a function of pressure drop, which is regulated by afferent and efferent arterioles, to control how much volume being filtered through glomerulus.
Based on mixing theory, an estimation of mixing time (tmix) of salt solutions as a function of pressure drop was calculated considering the homogenizer as a T-mixer followed by a homogenization chamber for particle aggregate disruption.
A correlation was developed that predicts the solids flow rate as a function of pressure drop measured in the horizontal section of piping leading from the top of the riser to the cyclone, often referred to as the cross-over.
This is achieved via an immobility factor, obtained from a comparison of the film drainage times for surfactant-laden systems and surfactant-free systems as a function of the drop approach velocity, surface Péclet number, initial surfactant concentration and the Hamaker constant, which is then used to modify the coalescence probability in the phase inversion model.
ANT-mediated proton leak rates at a fixed membrane potential were then plotted as a function of the drop in state 4 membrane potential during energization.
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