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We demonstrated the control of morphology, grain size and thickness of minerals deposited on the surface of electrospun fibers.
In this study, we demonstrated the control of crystal phase and structural quality of Au-catalyzed InAs nanowires grown on the GaAs {1 1 1}B substrates by tuning the V/III ratio in molecular beam epitaxy.
In 2009, Kanda et al. demonstrated the control of optical activity of a single layer gammadion metamaterials using infrared light [64].Zhou et al. showed a larger rotation angle and wider tuning range using a conjugated double layer gammadion structure [65].
However, it was noted that when the culture was monitored for Y x/s, the value of controls were significantly higher than that of other systems, which demonstrated the control mainly conducted vegetative growth during this stage, produced much biomass but accumulated little CA. Higher Q s values indicate a higher biomass conversion and productivity.
Further analysis demonstrated the control signal in the microarray was artificially low due to inaccurate normalization from the mismatch oligonucleotides.
Delivery over a year may not be clinically necessary, but this experiment demonstrated the control, capability, and flexibility of the delivery system.
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In summary, we had demonstrated the controlling of SA GaAs QRs' configuration by the QSE of InGaAs layer.
A simulation example demonstrates the control scheme.
The experiment demonstrates the control method is not feasible.
Simulation results are presented to demonstrate the control design procedure.
We demonstrate the control of nanostructure morphology by growth temperature.
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