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The steady state design of the two processes was optimized by minimizing the total annual cost (TAC) via a sequential iterative optimization procedure.
The effect of time and temperature in sulphuric acid leaching processes was optimized.
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In particular, the EBL and etch processes were optimized using three series of samples.
The surface modification processes were optimized for the high aspect ratio silicon structures of the UEA.
Laser parameters for the glazing and surface alloying processes were optimized, the criteria being a specified surface finish and integrity.
The experimental conditions (the immobilization and hybridization processes) were optimized by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) techniques.
Those processes were optimized by using experimental design strategy.
Metabolic engineering is the practice by which the development of biological processes is optimized through genetic and regulatory manipulations.
The association of higher case volumes and improved outcomes is frequently attributed to the principle of practice makes perfect, where skills and processes are optimized by repetition.
The process was optimized for a real field using particle swarm optimization (PSO) and genetic algorithm (GA).
The process was optimized for the dependent (response) variables Y1 to Y4, and the optimized formula was reached by keeping the bioadhesion force in target of 53.33 gm.
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CEO of Professional Science Editing for Scientists @ prosciediting.com