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In all cases, the optimum was carried out for both OIB and NZE standards.
Finally, in both cases, the optimum lamp separation was independent of the lamp emissive power.
We find that, in both cases the optimum level of product differentiation is negatively related to Process R&D.
In many cases the optimum is more likely a simplified model in combination with continuous long term simulations.
For all the cases, the optimum mass flow rate (0.20 kg/s) is selected to be used in order for a suitable comparison to be presented.
In OMP-PKS+RS, the optimum p varied from 0.6 to 0.8, note that in most cases (16 out of 20 cases) the optimum p was 0.6.
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In this case, the optimum configuration is also cells.
Meanwhile, in the last case, the optimum answer is not found.
In this case, the optimum calcination temperature can be either 800 , 700or 600 °C.
Meanwhile, in the last case, differ from the 118-bus case, the optimum answer (130 min) is found by 42%.
Again, for each case, the optimum level was ~3 times which further demonstrated the scalability of this process.
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