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Leaf osmotic potential decreased only slightly with GB application.
The current density at constant potential decreased continually with time.
The electropolymerization potential decreased with increased monomer and electrolyte concentration.
The cathode potential decreased rapidly, while that of the anode remained the same.
Interestingly, the differentiation potential decreased with time in culture in a lineage-specific manner.
Furthermore, when the VHF power was increased, the wall potential decreased at high pressures.
After adsorption of dye and suspension in distilled water, zeta potential decreased (in absolute value) indicating a tendency towards flocculation.
As the pH increased from 4 to 12, the zeta potential decreased from Zp = 9.4 mV to Zp = −45.4 mV.
The leaf osmotic potential decreased more rapidly at low stress levels and was always lower in plants growing under salinity.
The variation of half-cell potential decreased with the increase of concrete cover, chloride content and moisture content.
In contrast, as the oxygen chemical potential decreased, namely the reduced condition, the O vacancy becomes dominant in cubic-BaTiO3.
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