The spectra of ozone in the region \(2300-2600 \mathrm{~cm}^{-1}\) have been recorded with the high-resolution Fourier transform spectrometer of Reims. A White-type cell with a length of \(36 \mathrm{~m}\) and pressure of \(50 \mathrm{Torr}\) of ozone has been used. This region corresponds mainly to
On the infrared and raman spectra of water in the region 5–250 cm−1
✍ Scribed by P.A. Madden; R.W. Impey
- Publisher
- Elsevier Science
- Year
- 1986
- Tongue
- English
- Weight
- 466 KB
- Volume
- 123
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The far-infrared absorption coefficient and R(w) representation of the Raman spectrum are calcuiated for the interactioninduced dipole and polarizability of water by computer simulation, using the MCY potential. A simple dipole-induced drpoie model is able to reproduce experimentally observed bands at 60 and 200 cm-'. It is shown that these bands may be associated with oscillations in the centre-of-mass velocity correlation function.
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The effective operator approach is applied to the calculation of the spectra of 16 O 12 C 17 O and 16 O 12 C 18 O in the far infrared. Using the eigenfunctions of the effective Hamiltonians previously derived for each of these species, parameters of the corresponding effective dipole moment operator