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The optimizing condition (temperature at 35 °C and time for 3 min) in MACE to fabricate vertical nanoporous silicon structure is proposed.
In the optimizing condition, ΔA was directly proportional to the concentration ranging from 8.84 nM to 1.0 μM for Hg2+, and 7.82 nM to 0.462 μM for MTs with the detection limits of 2.65 nM and 2.34 nM, respectively.
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The properties of pyrolytic fuel produced in the optimizing conditions (554 °C, 128 mL min−1 Ar, 8.8 wt% nano-CeO2/SiO2, and 95.0 min) were compared with commercial diesel fuels as represented flash point of 49.0 ± 2.9 °C, the cetane number of 42.0 ± 1.8, and gross calorific value of 44.9 ± 3.2 MJ kg−1.
It was realized by improving the in-plane crystal grain alignment of the CeO2 buffer layer and optimizing conditions of the heat treatments in the calcination and crystallization processes.
By adjusting the hydrothermal reaction parameters, we attained the optimizing reaction conditions on the ITO substrate.
The aim of this study was to investigate the optimizing preparation conditions and immunological enhancement activity of Rehmannia glutinosa polysaccharide liposome (RGPL).
The aim of this study was to investigate the optimizing preparation conditions of Ganoderma lucidum polysaccharide liposome (GLPL) with response surface methodology (RS M and the immunological enhancement activity of GLPL.
Multivariate design (central composite circumscribed, CCC) was applied for optimizing conditions on the hydride generation and liquid/liquid extraction.
Hence, statistical approach was applied with an objective of optimizing conditions for maximum fructose production and studying the interactive effects of important parameters simultaneously.
Knowledge and/or awareness of the actual [O2] that the cell monolayer is subjected to could be critical for properly interpreting or optimizing conditions for particular biological effects or cell-based assays, respectively.
Response surface methodology has been successfully applied for optimizing conditions for CR dye removal.
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