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The electropolymerization potential decreased with increased monomer and electrolyte concentration.
Interestingly, the differentiation potential decreased with time in culture in a lineage-specific manner.
The variation of half-cell potential decreased with the increase of concrete cover, chloride content and moisture content.
The current density of alcohol oxidation very markedly increased and, correspondingly, the onset potential decreased, with increasing chain length, that is, with initially slightly increasing, and then constant, pKa.
Cardiomyocyte proliferative potential decreased with neonatal development.
Moreover, the magnitude of the ζ potential decreased with increasing HAP concentration for both HAP1 and HAP2.
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Mean diameters for DODAB/protein complexes increased, whereas zeta-potentials decreased with NaCl or protein concentration.
Transition time tT at which current decay transients intersect for given applied potentials decreased with increasing applied potential.
The breakdown potentials decreased with increasing aging time at 190 °C, and only one breakdown potential was measured for T8 and T8+ tempers.
As redox potentials decrease with rooting depth, this is matched by a decline in iron plaque formation.
By comparison with a bare glassy carbon electrode, peak current increased markedly with Co3O4 and Ag/Co3O4 samples, and peak potential decreased obviously with Ag/Co3O4 samples.
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