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Central composite design and kinetic model were applied to optimize the extraction conditions, and the optimal parameters were obtained as follows: homogenization time 70 s, negative pressure −0.068 MPa, extraction temperature 64.8 °C, ratio of water to material 13.4 and extraction time 53 min.
The luminescence characteristics and optimal parameters were investigated in detail.
The optimal parameters were also obtained from the Taguchi method.
Optimal parameters were (pH 2.4; adsorption time; tADS 100s and adsorption potential; EADS -0.10 V).
As we saw that optimal parameters were in most cases very different between synthetic and real datasets, we only used real datasets to train parameters for other real datasets and synthetic datasets for other synthetic datasets.
The interaction effects and optimal parameters were obtained by using Design Expert software.
The algorithm's optimal parameters were derived after measurement errors were taken into consideration.
The optimal parameters were used for typical hot stamping structural parts tests.
Optimal parameters were established by Central Composite Design and Response Surface Methodology.
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The closed forms of optimal parameters are verified by numerical optimization.
Based on the facts mentioned, an optimization technique relating to choosing the optimal parameters is put forward.
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