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Here, it is found that both mass fraction and cure temperature affect the electrical properties.
The pressure, velocity, oxygen mass fraction and local current density distribution are presented.
Corrosion rate decreased with Zn addition from 1.0% up to 3.0% (mass fraction) and then increased.
Increment in cold orifice diameter increases optimum cold mass fraction and decreases cold temperature.
So the mass fraction and the thickness can affect the performance of this composite absorber coating.
Vapor mass fraction and temperature fields inside and outside the droplet are presented.
CNT mass fraction and the matrix cure temperature are two ways to tune the direct and alternating current electrical properties of these nanocomposites; yet, how mass fraction and cure temperature affect electrical properties remains unclear.
Condensation temperature, ammonia mass fraction and ammonia-water turbine inlet pressure are considered as the effective parameters in optimization process.
Experimental results indicated that the specific heat capacity of solid composites decreased with EG mass fraction and temperature.
The increase of membrane length enhances both the mass fraction and mass flow rate of CO2 in permeate outlet.
How the composite scaffold's geometry and mechanical properties change with the nHA mass fraction and the process parameters were assessed.
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