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For producing the desired headspace concentrations in ppm, the corresponding vol/vol dilutions in mineral oil were estimated using the published information about the relation of liquid- and vapor-phase concentrations of volatile compounds in mineral oil (Cometto-Muñiz et al. 2003) and interpolating based on available vapor-pressure information (Pelz 2005; Pelz et al. 2006).
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As the relation of capacitance to liquid depth is superlinear, the minimum resolution, in other words the largest uncertainty in depth change we could obtain, is the depth corresponding to the first detected change in capacitance.
In the numerical examples we apply the method to obtain dispersion relation of the bulk liquid and to calculate solvation and absorption spectrum of atomic boron solvated in superfluid helium.
Volume-of-fluid simulations confirm the validity of the Davies–Taylor Collins relations for a variety of liquid properties.
These results are related to the better compressibility of the liquisolid blends, which contain higher amounts of liquid in relation to carrier material and better flow properties of mixtures prepared by spraying in fluid bed equipment.
Based on the CALPHAD approach, the relation between the volume fraction of liquid phase and the mass fraction of Co is calculated for the WC Co cemented carbide system.
Initially, the height of the prepared liquisolid tablets decreased with increasing amount of liquid in relation to the carrier Neusilin US2 (from sample 40%w with 8.20 ± 0.07 mm to sample 70%w with 4.90 ± 0.04 mm).
The properties affecting the constitutive relations governing the infiltration behaviour of liquid Hg0, and PCE for comparison, were determined using Pc S) experiments with different granular porous media (glass beads and sands) for different two- and three-phase configurations.
The objective of this work is to supply qualitative and quantitative information during the deposit of liquid metal in relation with process parameters.
The decreased pycnometric density with the increasing amount of liquid phase in relation to the carrier material could be explained, as Neusilin pores became filled with liquid.
It was also observed that the amount of liquid phase in relation to carrier material had an effect on hardness, friability, disintegration of tablet, and tablet height.
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