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Compared with the single CrN coatings, the friction coefficient of the CrN/DLC/Cr-DLC multilayer coating decreases about more than seven times after sliding a distance of 500 m.
Therefore, the power curve of Case 2 is smoother than that of Case 1. Accordingly, the SOC decreases about 0.1%% in Case 1 and 0.13 % in Case 2 (Fig. 10b).
If the costs with regard to the children's absence from school are included, the cost-effectiveness ratio only decreases about €6,0000, and the probability of cost-effectiveness is still moderate.
This energy burden decreases (about 34.8%) to 3.1 GJ/ton-CO2 with single-stage cooling configuration.
The introduction of the Cr/Cr2N increases the corrosion potential; the corresponding current density decreases about three orders of magnitude.
In the present test, the incompatible strain decreases about 20% of the flexural strength as the corrosion loss exceeds 27.0%.
The rate of the reduction of aliphatic methyl ketones decreases about three-fold for each additional methylene increment.
According to the obtained results, the sheet resistance of HNO3-treated graphene decreases about half compared to bare graphene.
There is a change of substrate selectivity in the latter case, as the kcat/KmEA value decreases about 70-fold, compared to that of class Pi.
Furthermore, effectiveness decreases about 1, 2, 3, 4.5 and 5.5%, respectively for the hot side inlet temperature of 400, 500, 600, 700 and 800 K.
It was shown that adhesion coefficient of the Ni coating slightly decreases (about 8%) with increasing layer thickness (5 40 μm).
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