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Characteristic emissions of complex of terbium ion with o-benzoylbenzoate ion and 1, 10-phenathroline (Tb o-BBA)3(phen)) based on organic–inorganic heTb o-BBActure device were obtained.
The NH3-based CO2 capture process integrated with the flow-by capacitive ion separation device was simulated and its performances under different operating conditions of the capacitive ion separation device were obtained.
Excellent read endurance characteristics of the Al/Cu/Ti/TaOx/W memory device were obtained even after >105 cycles under a read voltage of +0.1 V and CCs of 0.1 and 200 μA (Figure 12a).
In the healthy volunteer group, three consecutive measurements of each device were obtained by the same investigator to evaluate the intraobserver repeatability.
Simultaneous CO measurements by bolus thermodilution and the FloTrac/Vigileo device were obtained at baseline as well as 2 hours, 6 hours, 12 hours, 24 hours, 48 hours and 72 hours after inclusion.
Validation BP values from the tested device were obtained by calculating the average SBP and DBP levels over good-quality segments of 20 30 s, beginning not less than 30 s after a complete cuff deflation.
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By IFFT, the pulse response of the IDT device was obtained.
The red OEL device is obtained by doping 10% DCM2 in the BCP layer.
The temperature distribution of the device is obtained at 20 °C and 6o °C stage temperature.
With the obtained results, a tool for the design and analysis of a down-scaled catalytic reaction device was obtained.
Furthermore, the density distribution of interface states of the device was obtained from the forward bias I V characteristics.
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