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Above this period, the samples reached a determinant step whereby a solid-like behavior became predominant.
The major second WL for CA/Al2O3, Mo + CA/Al2O3 and CoMo + CA/Al2O3 samples reached a maximum temperature at 185, 215 and 225 °C, respectively.
The densification behavior and characterization of the microstructure revealed that FAST sintered samples reached a higher density compared with HP, in particular for the finer powder.
It appeared that the bSi-1 and bSi-2 samples reached a constant bearing area level at approximately 500 nm, while the bSi-3 samples reached a constant bearing area level at approximately 800 nm, highlighting the nanopillar height present on each surface.
After three cycles of the in situ synthesis process, the saturation magnetization of as-dried (undrawn) hybrid samples reached a practically high value of 15 emu (g sample)−1 thereabout at 298 K, reflecting a remarkable capacity of ι-Car as a gel matrix for the iron oxide synthesis.
Samples were dried in an oven at 80°C until the samples reached a constant weight.
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When the samples reached an OD of greater than 0.6, bacterial growth was also measured by dilution-plating on MM, MMM and CMM media.
Both samples reached an average of about 96% sensitivity at 5 km point distance.
Compared to the undoped TiO2 coating sample, the doped samples reach a more negative photopotential under illumination.
Almost universal CBAC2 values were obtained for samples reaching a critical state; the latter being defined according to a criterion based on LOCA test data.
However, it increases with torsional stresses applied on preloaded samples, reaching a maxima at a certain number of turns that corresponds to the maximum alignment of vector components.
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