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Obtained values of the optimum measurement points for the calibration of the differential pressure gage are checked via actual experiments.
Probability values of the optimum state sequence are collected to construct the probabilistic model which is used to compute the corresponding control limit for the specified operating condition.
Values of the optimum tuning design parameters are presented, and it is verified that two of the main beam resonances are optimized simultaneously.
The results of the optimization with a weighting factor show that the objective function values of the optimum designs obtained by the two surrogate models were similar to each other and improved from that of the reference design.
It was determined that the angle of incidence strongly depends on the refractive index of the electrolyte material, and that approximate values of the optimum angle of incidence can be found using a simple model and Snell's law.
According to this, Table 1 shows approximate values of the optimum cyclic prefix lengths.
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A rough value of the optimum haunch length is about 25to35%5% of the beam depth.
The predicted value of the optimum growth rate was 10.5 mm/day.
The minimum value of the optimum length is observed at the highest F/P ratio considered.
The predicted Da value of the optimum model was 0.4884 and the average experimental Da value was 0.4760.
A lower structure results in a higher value of the optimum carbon black volume fraction, due to the viscosity effect.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com