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Ions have δ ≈ 0.1 mm due to its small mobility.
However, the scintillator's pixel size remains currently constrained to ~0.2 mm due to technical limitations.
It was also found that the minimum radius of lateral confinement was limited to ∼0.3 mm due to heat conduction.
With respect to the manufacturer specified phase center offset, the measured antennae varied between −6 mm and +4 mm due to manufacturing variations.
The original RMSE of 1.82 mm due to scaling error was managed to be reduced to 0.77 mm while the correlation of errors to their distance from the origin reduced from 0.855 to 0.209.
Beams are found to be slightly astigmatic (maximum ratio wy/wx= 1.1) and with an expected beam radius in the plasma ranging from 18.6 to 26.0 mm due to cited zooming effects.
Zone of inhibition (56 mm) due to the vapor phase antimicrobial activity evaluated using disk volatilization assay was compared with direct assay (well diffusion assay) in liquid phase (i.e. 20 mm for the same dose of oil).
For CaCl2-induced aggregation, the introduction of humic acid enhanced the aggregation of FNPs at CaCl2 concentrations greater than about 5 mM due to calcium complexation and bridging effects.
The asphalt adsorption and strength behavior of asphalt mastic with 6 mm basalt fiber excelled that with 9 mm or 15 mm due to its largest contact area with asphalt mastic.
Although the estimated theoretical limitation of the FOV was more than 100 mm × 100 mm, the FOV demonstrated from the experimental results was only 40 mm × 40 mm due to the constraint of the wafer size.
The influence of ambient carbon dioxide concentration on extinction shows a sharp transition in extinction for larger size droplets (do > 1.5 mm) due to a change in the mode of extinction from diffusive to radiative control.
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