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According to [11], there is an optimum load impedance that maximizes efficiency for each frequency.
Optimum load distributions were obtained as the solution of a constrained maximization problem.
According to the optimum load impedance optimized above, we can design a suitable PTC for the TCP.
At optimum load condition, the frequency up-converted generators (FUGs) delivered 0.84 mW and 0.96 mW of average power.
Optimum load shedding during contingency situations is one of the most important issues in power system security analysis.
We have tested our approaches with experiments in multiservices scenarios showing that the proposed heuristics maximize the cell radius, providing the optimum load factor assignment.
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In contrast, the photocatalytic performance of Pt-CuS/ZnIn2S4 depends strongly on the amount of CuS-loading, and the optimum loading amount of CuS is approximately1.0 wt.%.
Significantly, the optimum loading of the ionomer showed a nondependence relationship with Pt loadings in catalyst layers.
The optimum loading of this photocatalyst was 1 g/dm3.
The optimum loading of TiO2 nanoparticles was identified at 10%.
In addition, 12% loading was found as an optimum loading of EBR30 in composite sample.
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