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Most particles are first entrapped in the mucus.
According to string theory, most particles are made from strings that are open-ended, like scraps of thread.
When particles are present during the nucleation of the grains, most particles are located at grain boundaries and the final mean grain radius ¯¯¯Rlim is predicted by R¯lim= 1.28r/fa0.50, with r the radius and fa the area fraction of the particles.
When the Lorentz force and gravity force are in same direction, majority of particles are trapped in the upper region of laser melt injection layer, while when the Lorentz force and gravity force are in opposite direction, most particles are concentrated in the bottom region.
The results predict that the elastic stress has no effect on coarsening kinetics where most particles are highly symmetric (fourfold in 2D and cubic in 3D), and the exponent remains 1/3 but the rate constant increases if stress is sufficient to induce symmetry-breaking bifurcation on most particles.
At low amplitudes, because most particles are close to the sieve plate, the collision numbers obviously increase.
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We find that most particles were biocompatible, as exposed cells remained 100% viable relative to controls.
The particle size distribution for the optimal catalyst peaked at 8 nm and most particles were substantially faceted.
Most particles were classified as fragments; signs of degradation/fragmentation were identified by SEM.
As seen, the surface area of most particles was 400 to 500 m2/g.
The graph depicting the profile of the particles under AFM shows most particles were less than 50 nm in height (Figure S1 in Additional file 1).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com