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With increasing specific laser energy, the degree of solution of TiC particles was increased.
The wetting of the Y – Al – Si – O liquid to the SiC particles was increased by the DC, hence better densification.
It was shown that the throughput of particles was increased while particles with narrow size distribution were produced from all four uniform electrospray jets.
The liquid velocity increased with an increase in aeration rate or draught tube length, whereas it decreased as the diameter of the particles was increased.
However, the thickness was decreased, and the crystal size of SiC particles was increased when the sintering temperature was higher than 1600 °C.
The specific surface area of the silica particles was increased by ~ 2.5-fold when the CaP film was formed on the silica particles.
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Plasma EVs were not changed in postprandial lipidemia, but the mean sizes of VLDL particles were increased and interfered with EV measurements (explained 66% of the variation in EVs-concentration in the postprandial phase).
Also, it was concluded that the recovery of coarse coal particles is increased by increasing pulp solids percent because of increasing medium viscosity.
As a consequence, the pore volume inside the wax matrix particles is increased and the diffusion coefficient of the drug is altered.
However, specific discharge rates of particles were increased slightly at coarse size ranges in the second compartment at higher mill capacity condition.
Moreover, the amount of binder and the diameter of the active material particles are increased and decreased numerically using an actual reconstructed electrode structure, and the effect of those structures on the effective conductivity is examined.
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