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Structure, size and material were optimized by using HFSS and the best scheme was given.
In addition, the parameter settings of the proposed approach were optimized by using the Taguchi method.
The amounts of solid sorbents for clean-up procedure were optimized by using experimental design.
As a result, the tribological properties of the CDC layer were optimized by using the plasma treatment.
The concentrations of these four media components were optimized by using central composite rotatable design (CCRD) of RSM.
The experimental conditions of the proposed microwave-assisted sequential extraction (MW-ASE) procedure were optimized by using multivariate mathematical tools.
The concentration of four media components were optimized by using central composite design of response surface methodology.
The effective parameters (factors) of USAEME including volume of extraction solvent (C2H4Cl2), extraction temperature and ultrasonic time were optimized by using a central composite design (CCD).
To minimize the power flow through periodic structures in a floating raft system, the geometrical parameters of the periodic structures were optimized by using a genetic algorithm.
Various parameters such as lipid ratio and lipid to drug ratio were optimized by using Design-Expert® Software to obtain high entrapment with minimum vesicle size.
The experimental conditions of temperature, amount of catalyst and ethanol:oleic acid molar ratio were optimized by using design of experiments (DOE) and canonical analysis.
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