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LiCo2/3Ni1/6Mn1/6O2 layered oxide was synthesized by the combustion method that led to a crystalline phase with good homogeneity and low particles size.
The epoxy based nanocomposites exhibited semi-conductive behavior and a maximum reflection loss of −15.4 dB at 16.5 GHz were obtained with thin thickness (1.6 mm) and low particles loading (2 wt%) of specimen.
The chain-like loose aggregation of nanoparticles is responsible for the abnormal increment of thermal conductivity in the BN/EG nanofluids with very low particles volume fraction.
The chain-like loose aggregation of nanoparticles is responsible for the abnormal increment of thermal conductivity enhancement for the BN/EG nanofluids at very low particles volume fraction.
The low particles sphericity and angularity of nutshells improved the formation of a tighter seal (Fig. 9b), which translated into higher seal integrities for nutshell blends.
Based on the unique properties of nanomaterials, they have been widely studied for heavy metals and dye removals from wastewater due to their high surface area, low particles size which leads to high numbers of adsorption active centers.
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In the case of low particle densities, as is the case in the midge swarms, tracking mistakes were negligible.
Occurring annually 10% of the time (min-max 2 24% based on monthly averages), this aerosol category is characterized by very low particle number concentrations (<100 particles cm−3).
The observed difference was clear especially for low particle coverages.
The association of high 230Thxs,0 and authigenic 238U could be due to very low particle accumulation rates coinciding with aU deposition.
A single pass was sufficient to achieve this at a low particle concentration and liquid viscosity.
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