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The short-circuit current decreased exponentially with increased ZnO thickness.
However, this current decreased with time down to negligible values.
Further increases in the current decreased the hardness.
The pulse current decreased the energy consumption to different extent depending on the pulse frequency.
The current decreased with the increase of hCG concentration ranging from 1 mIU/mL to 0.2 IU/mL.
After 3 months of operation the power performance decreased to 9.8 ± 3.5 μW, whilst current decreased to 461.2 ± 137.5 μA.
Furthermore, when the concentration of SiH4 gas was increased, the ion saturation current decreased while the electron temperature increased.
With increasing Rp the ion saturation current decreased while the variation of the electron temperature was insignificant.
In the case of MgCl2, the cathodic current decreased very slowly, and wet area and micro-droplets were not observed.
As the pH values increased up to 10.0, the response current decreased as the oxidation of NO is catalyzed by H+ in the acidic media.
The crater under negative polarity became shallower as the discharge current decreased and as the pulse duration increased: this led to a significant difference between EDM and EAM.
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