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Results of this study provide a practical and effective way to operate CAE process with reduced substrate temperature, reduced coating roughness, and improved film adhesion.
As the pressure is increased and the temperature reduced, water vapour in the gas condenses.
The incipient temperature reduced by 13.72 23.18%.
The results showed that increasing temperature reduced performance characteristics.
Results showed that with increasing WAR the blade inlet coolant temperature reduced along the blade span.
With the increase of biomass sharing, peak flame temperature reduced significantly.
Temperature reduced the short-term residual strength of some of the MSRFCs analyzed.
High temperature reduced chlorophyll content and the reduction was more in thermo-sensitive genotypes (Zhou et al. 2012).
The generated nanofibers remagnetized when its temperature reduced below the Curie temperature of the sample to form magnetic nanofibers.
An increase in temperature reduced the contact angle, indicating system is becoming more water-wet with the temperature increase.
Increase in temperature reduced the adsorption capacity of bentonite due to the enhancement of the desorption step in the mechanism.
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