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The optimal cell was found to have either an La0.6Sr0.4CoO3−δ or Pr0.6Sr0.4CoO3−δ cathode, an anode active layer prepared of a starting powder of SBET,powder = 135 m2/g, and a pore former content of 2 wt%.
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The cell configurations and machine layout for two periods corresponding to the best solutions obtained using the model (Kia et al. 2012) with three cells and the presented model with two optimal cells are shown in Figures 1 and 2, respectively.
The optimal cell number was found to be 1 × 10 cells/well.
Optimal cell number was found to be 5 × 10 cells/well transfected with 5 μl of Lipofectamine 2000 and 800 ng DNA per well for 48 hours.
The optimal cell death was only achieved when both p53 and NF- κB were switched on.
The optimal cell density was 0.5 4.0 × 104 cells /cm2.
Based on the results seen here, it seems the optimal cell size was about 0.08 ha (1/5 acre).
The optimal cell concentration was 0.05 g/mL in hypertonic solution and 0.2 g/mL in hypotonic solution.
The optimal cell density was confirmed by using a variable number of cells.
An optimal G-shaped load cell was designed for measuring two ranges of loading.
To design an optimal structure, the scaffold unit cell was mathematically modeled and imported into finite element analysis.
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