The rotational analysis in the ground vibrational state has been carried out for CH 3 D by using the ground state combination differences. More than 1500 allowed and 2500 forbidden transitions from the fundamental bands 3 , 5 , and 6 were used to determine 12 rotational parameters, which reproduce t
A Global Analysis of Pure Rotational Spectra of 14N16O2 in the Ground Vibrational State
β Scribed by Yuyan Liu; Xiaoyong Liu; Hongping Liu; Yuanqing Guo
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 66 KB
- Volume
- 202
- Category
- Article
- ISSN
- 0022-2852
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π SIMILAR VOLUMES
A careful rotational analysis of the ground vibrational state of the CHD 3 molecule is made on the basis of the ground state combination differences method using, as the initial information, transitions from 12 infrared absorption bands: n 3 (A 1 ), n 6 (E), n 5 (E), 2n 3 (A 1 ), 2n 6 (A 1 ), 2n 6 (
High-resolution Fourier transform spectra covering the \(720-920 \mathrm{~cm}^{-1}\) spectral region have been used to perform a reanalysis of the \(\nu_{2}\) band \(((010)-(000)\) vibrational transition \()\) together with the first analysis of the \(2 \nu_{2}-\nu_{2}\) hot band of nitrogen dioxide
This paper presents the analysis of the spectra of SiDF 3 in its vibrational ground and v 4 Ο 1 states. The pure rotational spectrum of the ground state was measured up to 903 GHz ( JΠ Ο 65). Rotational, quartic, and sextic centrifugal distortion constants were accurately determined. Furthermore the