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The evolving process of particle formation is shown in Fig. 2b as well as the change of hydrodynamic particle diameters measured by dynamic light scattering (DLS).
The selectivity towards methylglyoxal formation is shown to be determined by the Mo/Fe molar ratio.
The rate of hydrate formation is shown to be limited by the rate of methane mass transfer.
The occurrence of polymer-solvent compound formation is shown in both systems and confirmed by neutron diffraction investigations.
Efficiency of the reinforcement depends on the reaction conditions; a crucial effect of an interphase formation is shown.
The robustness of the biomass formation is shown to be primarily dependent on the specific growth rate adjusted in the first hours.
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Experimental QYs for VA formation are shown in Fig. 3, and display significant variation with N2 pressure and excitation wavelength.
This aggregate formation was shown to be reversible.
N2O formation was shown to be always positive, yet highly variable across the seven plants.
Voids and hillocks formation are shown to be two independent phenomena.
Furthermore, rutile formation was shown only for the dark green specimens.
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