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A known volume of liposomal celecoxib was diluted into suitable concentration with methanol.
Standard solutions were diluted to 50, 25, 10, 5 and 2 μg/mL concentration with methanol from the above stock solution.
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The 5 standard solutions were diluted to six different concentrations with methanol to investigate the linearity.
Standard solutions were diluted to series of appropriate concentrations with methanol and 5μL aliquots of the diluted solutions were injected into the HPLC for analysis.
The stock solution containing rutin, luteolin, vitexin and luteolin-7-glucoside was diluted to a series of appropriate concentrations with methanol, and an aliquot of the diluted solutions was injected into HPLC for analysis.
The interaction terms of catalyst concentration with both methanol to oil molar ratio and reaction temperature exhibited a positive effect delivering (P < 0.0001).
The substituted lanthanum cuprates of composition La2−xMxCu1−yM′yO4 (where M=Sr, Ca and Ba; M′=Sb and Ru; 0.0≤x≤0.4 and y=0.1) were used to demonstrate the correlation of the Fermi level and carrier concentration with the methanol oxidation onset potential and activity, respectively.
The first solution of the series concentration was DPPH with methanol only.
After 50 μL of tested EPS (10 mg/mL) and standard ascorbic acid in the various concentration were diluted with methanol up to 3 mL, 150 μL DPPH was added.
The stock solution of each reference compound was further diluted to a series of concentrations with 75% methanol for LOD and LOQ.
Both experiment and simulation results show that THD value has a monotonic correlation with methanol concentration at certain frequencies and its sensitivity to concentration is improved with increased current amplitude.
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