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The reactivity of Cys-47 and Cys-101 toward 2,2′-dithiobis 2-nitrobenzoic acid) (DTNB) was assayed at 2,2′-dithiobis 2-nitrobenzoicse of absorbance at 412,2′-dithiobis 2-nitrobenzoicoacidion absorbs (ε412 nm=13.6 mM−1 cm−1).
At the beginning stage of several minutes, a broad-range increase of absorbance from 400 nm to 750 nm is produced.
The increase of absorbance due to oxidation of guaiacol was measured at 470 nm.
The increase of absorbance at 265 nm was recorded for 5 min.
The increase of absorbance resulting from ABTS oxidation was monitored at 420 nm (ε = 36,000 M−1 cm−1).
Crude laccase preparation was added to the solution and the increase of absorbance at 420 nm was monitored with a temperature-controlled spectrophotometer U-30100, HiTokyo, Japan, Japan).
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More interestingly, a quantitative decrease of the absorbance at 532 nm of GNP and increase of the absorbance at 400 nm, the new peak, were observed when methyl parathion concentration increased from 10too 500 ppm.
More interestingly, a quantitative decrease of the absorbance peak at 532 nm of GNP and increase of the absorbance at 400 nm, the new peak, are observed when methyl parathion concentration increases from 10too 500 ppm.
There is another distinct feature of the SL absorbance with different annealing temperatures in the high-energy regime, that is, the increase of the absorbance as the annealing temperature increases, which is not reproduced in the SRSC film.
One unit sulfite oxidase activity is defined as enzyme activity needed to produce an increase of 1.0 absorbance at 550 nm per min at 25 °C.
The presence of captopril affected the production of AgNPs in the organic phase, thereby resulting in an increase of plasmon absorbance intensity of nanoparticles.
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