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Fermentation medium and process parameters were optimized through three orthogonal array designs.
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MST/32 seed performance was assessed after performing several treatments based on a L9 (34) (four factors at three levels) orthogonal array (OA) design.
To conduct the Taguchi method more comprehensively, we have implemented a three stages orthogonal array experiments with MOCV.
The optimization of supercritical fluid extraction conditions has been carried out by Taguchi method using a three level orthogonal array design with an OA9 (34) matrix.
A five level orthogonal array design coupled to genetic algorithm was employed to obtain the optimum experimental conditions for the determination of PA using peak absorbance as the measure of the system's performance criterion.
Considering the aforementioned three variables with three levels, an orthogonal array (Table 5) has been designed for experimentation of extruded and sintered samples.
Taguchi method based on three levels, six variables L27 orthogonal array robust design was implemented to optimize experimental conditions.
A statistical experimental design method (Taguchi method based on three levels, five variables L18 orthogonal array robust design) was implemented to study the effect of and optimize the experimental conditions of: (1) spray mesh size, (2) BSA solution concentration, (3) surfactant concentration, (4) drying air flow rate and (5) inlet temperature on: (1) size and (2) morphology (axial ratio).
In this paper, we propose some three level orthogonal arrays that can be used as combined arrays.
An L16 (five factors in four levels) standard orthogonal array was employed to evaluate the effect of Fe(III) and HCl concentration, reaction temperature, solid-to-liquid ratio and particle size on the reaction rate of sphalerite.
Application of Taguchi experimental design with three level L9 orthogonal array (OA) and statistical analyses was attempted for identifying the relationship between the hollow fiber membrane formation conditions selected and the membrane performance and further making predictions.
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