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Experimental design using central composite design (CCD) was used to facilitate method development.
In this study, an experimental design using central composite design (CCD) has been explored in the production of alumina based nickel-ferrite nanoparticles via wet impregnation method.
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An experiment was designed using central composite design.
The experimental runs were designed using central composite design of response surface methodology.
The experiments were designed using central composite design of response surface methodology.
The experiments were designed using central composite by applying 24 full factorial designs with two centre points.
The experimental trials were designed using Central composite design and multiple optimisation was also carried out for higher strength and lower sorptivity.
The experiments were designed using central composite rotatable design (CCRD) of second order, according to the mathematical model of desirability functions.
Batch experiments were designed using central composite design (CCD) with two parameters, i.e. the copper concentration (10 100 mg/L), and the quantity of immobilized SRB in culture solution (19 235 mg of VSS/L).
The effect of pH, temperature, initial strontium concentration and shaking time on strontium sorption were investigated via experimental design method using central composite design (CCD).
The effect of reactants mixing rate and the volume ratio of methanol/ethanol as solvent on the morphology and magnetic properties of nickel nanoparticles were studied by design of experiment using central composite design.
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