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The synthesized colloidal AuNP shows maximum absorbance intensity in UV-Vis spectra at 520 nm.
That is, small and sharp absorption peak is observed and the maximum absorbance intensity is much lower than those of other samples.
As seen from Fig. 8b, the maximum absorbance intensity (at λmax ~ 490 nm) for the solutions containing lac dye before and after heating to 60 150 °C lies in the range of 0.70 0.75.
Using water as diluting solvent gave the highest absorbance value in case of PSE and PPA while in case of EPH; the maximum absorbance intensity was produced by using methanol as a diluting solvent.
Maximum absorbance intensity was obtained at pH 7.7 and remained constant up to 7.9 after which the absorbance of the reaction product began to decrease gradually until pH 9. Therefore, pH of 7.8 ± 0.1 was chosen as the optimum one (Figure 4).
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Maximum absorbance intensities were achieved using 0.8-1.5 0.8-1.5.0-2.0 mL or borate buffer solutions for Methods I and II, respectively (Figure 4).
Cellular UV image profiles scanned with an absorbance intensity maximum of 278 nm identified the pattern of lignin distribution in the individual cell walls, with the highest concentration occurring in the middle lamella and cell corners.
Responses of the reaction systems were the maximum absorbance (Y1) and maximum fluorescence intensity (Y2), correspondingly.
Then, the spatio-spectral reading identifies the specific wavelength of maximum absorbance that allows to characterize the pigment intensity change.
The colour intensity increased with increasing temperature and maximum absorbance was obtained following heating on a water bath at a temperature of 70-75°C 70-75°Cminutes.
The photodegradation of indigo disulfonate dye was obtained from its relative intensity of UV/VIS spectra which give the maximum absorbance peak at 611 nm.
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