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To optimize biosurfactant production, a Plackett Burman design and a central composite rotational design were used.
The hydrolysis process was optimized by central composite rotational design and response surface analysis.
The experiments were carried out according to a 23 central composite rotational design (CCRD).
Experiments were designed according to Central Composite Rotational Design with three factors, including central and axial points.
The influence of ultrasound intensity and pulse cycle was investigated by means of a central composite rotational design.
The optimization strategy was conducted using the Plackett-Burman design for variable selection and central composite rotational design (CCRD).
Similar(22)
The steps of enzyme concentration and ester synthesis were performed by applying central composite rotational designs (CCDR) in order to evaluate the process variables.
A central composite rotational 23 design was used with the factors of soaking time, concentration of NaHCO3 and drying temperature.
The concentrations of TiO2 and Pd were varied during catalyst synthesis according to a factorial rotational experimental design.
The effects of pH and solvent:biomass ratio were evaluated through a central rotational composite design and response surface methodology were used to determine the best extraction conditions.
These cases highlight our patient selection criteria, staging protocol when cellulitis or abscess is present, rotational flap design, surgical technique pearls, and the typical postoperative healing progress.
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