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Over the examined range, the effect of fluid temperature was found to be small and within experimental error.
Outside of this temperature range, the effect of roaming on global combustion properties is small, on the order of a few percent for ignition delays and less than a percent for flame speeds.
In the investigated range, the effect of the operating frequency was highest.
It is clear that in this frequency range the effect of plasma density decreases the growth rate of the system.
It is clear that in this frequency range the effect of plasma density is to decrease the growth rate of the system.
At this thickness range, the effect of the substrate temperature, the nominal ZnO thickness and the partial pressure composition during ZnO growth could be used to improve the catalytic effect and the nanostructure quality.
Similar(51)
In the supercritical speed range the effects of the surrounding air depended on the amplitude of vibration and its change with increasing geometrical nonlinearity.
Therefore, for smaller nanowire heights in the nanometer range, the effects of surface elasticity, piezoelectricity, and shear deformation should be taken into consideration so that more accurate results are obtained.
Especially in small particle size range, the effects of particle size and nanolayer thickness become much more obvious, which implies that manipulating nanolayer structure might be an effective method to produce highly thermally conductive nanofluids [55].
In the intermediate temperature range (400 600 °C) the effect of predeformation becomes weaker with increasing temperature.
A detailed ionic conductivity measurement in the 250°-575 °C temperature range describes the effect of MnO on conductivity of c-ZrO2.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com