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Using thermocouple measurements and heat transfer calculations based on the locations of these thermocouples allowed for the generation of data such as radial heat transfer, deposition thickness, deposition thickness growth rate, and total deposit volume for each instant of the logged measurements.
A deposition thickness up to 0.35 in.
The deposition thickness k is another important parameter and defined as the deposition thickness on the plane perpendicular to the vapor beam.
The desirable output of the model was the wax deposition thickness (WTR).
The deposition thickness of the AZO was estimated to be 400 nm.
The gold deposition thickness was 40 nm, monitored by a microbalance.
As indicated, the deposition thickness was strongly dependent on this parameter.
The deposition thickness increased with the decreasing velocity but did not with oil temperature.
In general, the height of the achiral particles is dependent on the deposition thickness k.
The deposition thickness of the CoO x was controlled to ca. 100 nm.
The surface morphology became rougher with higher deposition thickness as shown in Fig. S2.
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