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On the 97th minute, all spectral maximum absorbance is reached, as the solution changes completely turbid.
The Wave length corresponding to the maximum absorbance is given below: λ max = 486 nm [11].
From Figure 4, the maximum absorbance is corresponding to the condition of 70°C (polymerization temperature) and 5 h (polymerization time).
The results obtained (Fig. 5) indicated that maximum absorbance is attained at 15 min for method A and 10 min for method B. The optimum temperature to carry out the reaction is determined by following the absorption intensity at different temperatures ranging from 30 80 °C.
The maximum absorbance is the absorbance at the plateau (around O.D. = 3.5 – 3.7) of the curve obtained by plotting the optical density versus serial dilution of sera of immunized swine in a semi-logarithmical manner.
Briefly, this method is a colorimetric method based on the reaction between bilirubin and diazotized sulfanilic acid solution to produce a complex known as azobilirubin whose maximum absorbance is pH dependant; to preserve the pH of the reaction an oxalic acid/ sulfanilic acid buffer is used.
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The argon-precursor mixture, however, showed a change in power which indicated that the radiation was being absorbed, and the maximum absorbance was found at a wavelength of 9.54 μm.
The maximum absorbance was collected.
The maximum absorbance was around 984 nm.
The maximum absorbance was obtained when the spacer layer was six PDDA/PSS bilayers.
It was observed that within pH 6 7, maximum absorbance was achieved.
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