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Semi-analytical, numerically inexpensive models of the processes and structure enable a thorough investigation of the couplings between process and structure by comparing four design formulations: in decoupled problems, either the process or the structure is optimized; then, the process is optimized with targetted low or high structural performance.
The process is optimized at two stages.
The process is optimized for bandwidth efficiency by using a user-sensitive content retrieval system.
The process is optimized with respect to SU-8 glass transition temperature.
At 550 °C the efficiency of the process is optimized by the amount of water during the growth.
Overall, the results suggest that the strains have the potential of producing higher lipid content in the wastewater treatment application if the process is optimized.
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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.
The process was optimized by a Design of Experiment.
The initial parameters of the process were optimized by thermodynamic calculations using Thermo-Calc software.
The effects of primary variables on process outcomes were investigated, and then, the process was optimized.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com