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The reductions of the specific entropy generation up to 24.78% and 10.04% can be achieved for optimal reactor inner diameter and optimal catalyst bed density, respectively.
Results of the current analysis identified a threshold for pazopanib Cτ, which must be achieved for optimal efficacy in patients with RCC.
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Device efficiencies up to 9.3% are achieved for optimal gallium content.
A yield of functional CNT-FET of 27% has been achieved for optimal designs.
The findings indicate that the total efficiency of 64% and electrical efficiency of 51% was achieved for optimal hybrid system.
An overall reduction of 1.5% and 7.2% of BLEs compared to RPAG could be achieved for the optimal PAG and PALG methods, respectively.
However, the synthesis results show that a BLE reduction of 1.3% and 8.5% on average compared to RPAG could be achieved for the optimal PAG and PALG method, respectively.
The target reliability of the plate is achieved for an optimal combination of impactor masses and velocities.
As can be seen in Figure 2 (left panel) channel capacity is achieved for the optimal input distribution {[p27], [Skp2]}* = {5.8 μM, 0.0512 μM} (relative to the channel concentration [Cks1]* = 0.1 μM) for the ternary complex p27-Cks1-Skp2 p27-Cks1-Skp2 p27-Cks1-Skp2
This can be explained by the anatomical shape of the handle, because the anatomical handle considers the optimal power-grasp posture, with optimal diameters being achieved for each finger, which assures the maximum voluntary contraction of fingers.
Hence, optimal throughput is achieved for 0.2 of the nominal beam size.
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