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The loops are assumed constrained at spherical grain boundaries.
Globular grain growth is governed by diffusion around a spherical grain.
All films were very smooth, with a characteristic spherical grain size depending on Al content.
All three samples show different morphologies: BaWO4 particles (Figure 2(a)) grow in large spherical grain sizes between ~0.8-0.9 ~0.8-0.9
During manufacturing semisolid A2017 alloy by the proposed process, the spherical grain was formed with the application of the large force provided by the rough roll.
The changing grain size model for spherical grain geometry was used to obtain the kinetic parameters of the NiAl2O4 reduction working with both NiO-based oxygen-carriers.
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The SWCNT/PANI composite film shows a higher specific capacitance, because the presence of SWCNT in the growth solution could promote the rate of aniline polymerization and result in a smooth, uniform, and highly porous composite film with a higher doping degree and lower defect density compared to the rough spherical grain-based pure PANI film.
For spherical grains, Nd = 3Md/(4πa3σ), where σ is the typical material density of grains.
The latter model represents a configuration of spherical grains packed in a simple cubic structure.
It is a matter of self-flowing refractory castables with spherical grains.
Percentage deviations from spherical grains depend on dimensional space and form: 0% minimum and 100% maximum deviations were observed.
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