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Alignment was found to be a function of plating density.
Survival on etched fibers was reduced at the lower plating density.
Large scale energy storage applications necessitate maximizing the plating density within the flow battery.
Plating results using a Cu Fe sulfate chemistry demonstrated a plating density in a carbon felt electrode (145 mAh cm−2 at 40 mA cm−2).
To determine if initial cell plating density alters steroidogenesis and the E2 P ratio in granulosa cells in long-term serum-free culture.
Two layered electrode configurations were able to achieve 150 mAh cm−2 of plating density: carbon felt with non-conductive felt, and carbon felt-Daramic-carbon felt.
Low plating density also enhanced their proliferation.
Another factor that influenced SSC phenotype was plating density.
Single experiments were performed with particular conditions, such as specific plating density and specific RANKL treatment.
Cells were passaged every other day, at constant plating density of 3×104 cells/cm2.
We next varied initial monocyte plating density and concentration of RANKL in long-term cultures of RAW 264.7 cells.
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