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Results of microstructure observation showed that Zn-enriched phases disappeared and α-Mg existed in the joints in the form of coarse dendrites by increasing the concentration of Mg in the solder alloys.
The analyses of the modified catalyst by X-ray diffraction, Raman spectroscopy and X-ray photoelectron spectroscopy showed that the V2O5 and β-VOPO4 phases disappeared and suggested that an amorphous phase formed on the surface.
The presence of abundant ARISA fragments from the archaea was comparably stable over the four major time phases (Fig. 4), although particular fragments (e.g. 713 bp), abundant in the earlier phases, disappeared in phase IV, while others (e.g. 747 bp) appeared in significant numbers only in later phases.
At higher doses of DLBS4847, the G1, S, and G2/M phases disappeared, while at 200 μg/mL only cells in the G0 phase were seen to accumulate.
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Although it was not quantitatively determined, the relationship between different phases seems to indicate that amorphous SiO2 growths while amorphous Si (a-Si) and c-Si phases disappear.
It was found that during oxygen desorption crystalline Na2WO4 and Mn2O3 phases disappear, and newly-formed compounds solidify in the form of crystalline MnWO4 and the glue-like matter.
After high-temperature sintering LLZO phase disappeared.
In the meanwhile, the BaF2 phase disappeared as well.
The FeAl3 phase disappeared as the aluminum layer was consumed.
The unidentified smectic phases appeared and DC phase disappeared on increasing carbon chains.
After 1000 °C annealing, (Co, Ti -rich phase disappeared, while (Ni, Ti -rich phase andisappearedrich phase grewhile
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