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The particle washing did not appreciably increase the particle size (mean average particle size 130 nm).
The mean average particle diameter and particle size distribution was evaluated by the Dynamic Light Scattering (DLS) and Brunauer- Emmett-Teller techniques (BET).
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Sieve analysis was performed on the sand, and average mean particle size (D50), coefficient of uniformity (CU), and coefficient of curvature (CC) of 0.22 mm, 1.71, and 1.07 were determined, respectively.
Mean averaged reciprocal rank.
Lie with mean averages.
Average measurements of the mean particle size (solids volume basis) were used, reported from five analyzer measurements.
Fecal particle size, expressed as retained geometric mean particle length, averaged 1.13 mm with more than 36% of particles being larger than 1.18 mm.
This paper presents models for water recovery from the downstream thickening, filtration and tailings permeation and decantation processes, using Sauter Mean Diameter to characterise average particle size.
The average particle mean diameters were calculated to 15.00 ± 1.07 nm for 1% CMSP (DS 0.8), pH 11 and 50 kGy sample which was in close resemblance with the DLS average particle size, 16.00 ± 0.30 nm.
The particle size distribution was characterized in terms of their mean particle size (Z-average diameter) at room temperature.
The mean particle size (z-average) and zeta potential of sCT nanoparticles were determined by Zetasizer (Zetasizer 3600, Malvern Instrument Ltd., Worchestershire, UK) at 25°C.
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