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The extraction procedure was optimized using the multivariate optimization approach following a two-stage process.
Mg2+ concentration was optimized using the condition determined to be optimal in the previous section.
These were subsequently optimized using the Levenberg Marquardt minimizer from the MATLAB optimization toolbox.
Finally, the operation conditions are optimized using the developed model.
The milling conditions were optimized using the desired alloy composition.
The processing conditions were optimized using the Box Behnken design.
A digital FIR kernel for use in multi-mode, multi-standard radio transceiver is optimized using the design methodology.
The interfacial polymerization conditions were first optimized using the conventional single-bore hollow fiber (SbHF) substrate.
The arch stiffness and tunable stiffness range were optimized using the epsilon constraint method.
The concentrations of the three above mentioned compounds were further optimized using the Central-Composite Design.
The porosity (ɛpr) of the porous medium layer is optimized using the proposed model.
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