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The maximum desirability was identified at the smallest mean volume diameter (dv) and span, and the highest yield.
Also included is an analysis of the mean volume diameter of the precipitate for each experimental run with scanning electron microscope (SEM) images.
A relationship between number concentration and mean volume diameter of nucleated aerosolparticles and operating conditions is obtained considering the free molecular regime vapor condensation onto the critical nuclei, which is the main difference with the liquid-phase model.
First, a relationship between number concentration and mean volume diameter of nucleated aerosol particles and operating conditions is obtained considering the free molecular regime around the critical nuclei, which is the main difference with the liquid phase.
Through various in vitro characterizations, it was shown that drug loaded microparticles had a high drug loading with promising aerosolization characteristics (mean volume diameter (Dv50) 3–4 μm, experimental mass mean aerodynamic diameter (MMADe) 4 4.5 μm, fine particle fraction (FPF%) 40 45%, emitted dose (ED%) 94 95%).
The cholesterol content and the hydrophilicity potential of encapsulated compounds were the main factors affecting the mean volume diameter of the prepared vesicles.
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The mean volume diameters (d v ) of the prepared nonionic surfactant vesicles with different compositions are presented in Tables 3 and 4. From data presented in these tables, it is obvious that, following the increase of cholesterol molar percent, the d v of neutral niosomes prepared by film hydration or remote loading methods was increased.
Rheological properties and the droplet mean volume-surface diameter of water-in-oil-in-water double emulsions ELMP WPI and ECMC WPI, stabilized with low-methoxyl pectin (LMP whey protein isolate (WPI) or sodium carboxymethylcellulose (CMC WPI complexes were determined.
The size distribution of milk fat globules ranges from 1 to 12 μm with a mean volume-weighted diameter of 4.4 ± 0.2 μm (surface area = 1.8 m.g-1 fat).
The size distribution is assumed to be of lognormal form and is expressed in the diameter of mean cluster volume, d vc, i.e., the mean volume equivalent cluster diameter, the mean of volume weighted size distribution, d wvc, and the geometric dispersion parameter σ c (Table 1), derived from the CMSM fit.
The mean volume, central plane diameter, thickness, aspect ratio and sphericity of the precipitates in the grain interior as well as near to the grain boundary were measured and/or calculated.
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