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The intensities of absorption peak at 262 nm with different samples were summarized in Table 2.
Obviously, the increase in intensities of absorption shoulder with increasing salt concentration reflects formation of more ZnS nanoparticles.
Intensities of absorption bands expressed in terms of oscillator strengths (f) were used to determine the Judd-Ofelt (J-O) intensity parameters Ωλ (λ = 2, 4 and 6).
The intensities of absorption peak at 262 nm for PS-b-P2VP-b-PEO thin films with LiCl (Fig. 8c) were weaker than the pure film (Fig. 8b).
Similar results were obtained for the intensities of absorption bands at 1540 and 1516 cm-1 relative to the absorption at 1030 cm-1.
It can be observed that the intensities of absorption bands of oxygen-containing functional groups such as C-O (1,052 cm−1) were dramatically reduced.
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The resulting spectrum is a plot of intensity of absorption versus frequency.
The changed intensity of absorption reflected the process of degradation.
The intensity of absorption bands in the ultraviolet region was increased with increasing precursor concentration.
According to the Lambert Beer's law, the intensity of absorption can be given by (1).
The decomposition temperature and intensity of absorption increase with increasing amount of CB[6] threaded.
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