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In particular, a 30 times higher photocatalytic hydrogen production was obtained upon gold addition to TiO2.
An elevated phase transition current of 1.42 μA was obtained upon heating, along with electrical energy outputs ranging between 13.3 μJ and 108.3 μJ.
Furthermore, a sharp decrease of the liquid kinetic turbulent energy was obtained upon insertion of the heat-exchange tubes even for low enclosure occlusions.
By combining five electrically connected p n junctions an output voltage of 25 mV was obtained upon the applying ΔT = 50 K.
Strength approaching 1 GPa was obtained upon addition of SiC particles, but residual thermal stresses prevented from notable increase of toughness, which fluctuated around 4 MPa √m.
An 11 20% decrease in the average peak widths of nine peptides was obtained upon combining a preconcentration column with an analytical column as compared with a setup using an analytical column only.
Phase-pure, ultrafine nanocrystalline anatase with high specific surface area (up to 250 m2 g−1) was obtained upon injection of a titanium alkoxide precursor into ethanol with designed volume of water under mild solvothermal conditions (<200 °C, 2 h).
Furthermore, the maximum lutein productivity of 3.45 ± 0.07 mg L− 1 d− 1 was obtained upon cultivation of C. minutissima in a 2-L airlift photobioreactor using the optimized medium with appropriate process conditions.
However, the highest fluorescence was obtained upon using dichloromethane (Table 1).
The first sample was obtained upon diagnosis of sepsis, but prior to initiation of the therapy.
Maximum absorption intensity was obtained upon using 1 ± 0.5 mL of the buffer solution (Figure 4).
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