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The numerical optimization finds a point that maximizes the desirability function.
Upon applying the method of maximizing the desirability function, optimization of the factors gave the lowest warpage and shrinkage for nanocomposite PLA bone screw (PLA9).
Optimal conditions using ethanol, a Xbridge BEH Shield RP18 column and a 500 mL starting isocratic step, were determined by maximizing the desirability value and corresponded to a gradient slope of 2.57 %/min, a pH of 4.85, and a temperature of 33.7 °C.
In the present study, the goal is to find optimal parameter settings that maximize the overall desirability function for higher machining rate and minimum surface roughness value.
The final outcome was the optimal design, i.e., the combination of the elements that maximize the global Desirability Index.
The numerical optimization reveals the points that maximize the desirability function.
A formulation of tea mixtures was then optimized by the desirability function aiming to maximize the inhibition of different strains and/or serotypes of Salmonella.
An appropriate larger-is-better criterion was adopted to maximize the biosorption capacity and bioremoval efficiency along with S/Nratio, ANOVA and desirability approach.
A desirability function was used to minimize lag time and to maximize the other dependent variables.
A multi response optimization approach based on a global desirability function (DF) of the factors was employed to simultaneously maximize the response factors.
The software also combined the individual desirabilities of process variables into a single number in the search to maximize the function.
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