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The macroscopic smoothing during the growth enabled the long-term stable deposition required to obtain large crystals.
Specifically, the critical nuclear energy deposition required to render In0.53Ga0.47As amorphous was less than that of both InAs and GaAs for irradiation temperatures of −196°C and 23°C.
Closure in response to touch was rapid, taking place in only 6.86 ± 3.06 s (SE, N = 30), while closure in response to pollen deposition required 0.5-1.5 0.5-1.530).
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Polymer deposition requires good thermal contact between feed gases and the hot-zone.
Production scale deposition requires high throughput, high uniformity, batch-to-batch reproducibility, and low defect capability.
However, OPVs have relatively low energy efficiency (12%) [1], and their deposition requires a costly vacuum deposition technique.
High rate deposition requires operation at a point that is normally unstable.
Implementation of mechanical methods of remediation of paraffin deposition requires knowledge of the gel strength.
AuNPs synthesized using the Langmuir-Blodgett film deposition require complicated processing steps and involve several chemical reactions.
This demonstrates that accurate prediction of the energy deposition requires a proper treatment of even small parametric uncertainty.
Deposition requires tight control of the volume and position of the dispensed reagent, therefore an overlayer is preferred and was used in the prototype sensor.
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