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The minimum thermal resistance is 0.09 K/W.
The minimum thermal efficiencies are found nearly 40%and20%0% for the gas and steam cycles.
Minimum thermal conductivity has been observed for x=0.1 and 0.5.
Polypropylene films that have been reprocessed three times showed minimum thermal expansion.
Results showed that the CNT TIM produced the minimum thermal contact resistance.
The minimum thermal conductivity was 0.761 W/(m K) at the rotation rate of 15 rpm.
The minimum thermal conductivity value was 0.074 W/m·K, observed at 40% expanded perlite waste replacement.
The minimum thermal conductivity value was 0.3924 W/m K, observed at 60% WPLA replacement.
By controlling the oxide/TBC interface formation, better adhesion and minimum thermal stresses could be achieved[14].
It was found that the optimal volumetric fluid charge for the minimum thermal resistance is about 55%.
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A minimum LHP thermal resistance was 0.068 °C/W, which was obtained at 500 W.
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