High-resolution Fourier transform spectra of a natural sample of hydrogen telluride and of monoisotopic H 2 130 Te have been recorded in the 3.2-4-0 mm spectral region where the 3n 2 , n 1 / n 2 , and n 2 / n 3 bands of this molecule absorb. The (030) rotational levels were least-squares fitted usin
High-resolution measurements of the ν2 band of HNO3 and the ν3 band of trans-HONO
✍ Scribed by Arthur G. Maki
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 622 KB
- Volume
- 127
- Category
- Article
- ISSN
- 0022-2852
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
The 3 1 and 3 1 ϩ 3 bands of propyne have been recorded at Doppler-limited resolution by Fourier transform spectroscopy and intracavity laser absorption spectroscopy, respectively. The two bands show a mostly unperturbed J rotational structure for each individual K subband. However, as a rule the K
The \(\nu_{2}+\nu_{3}-\nu_{2}\) hot band of \(\mathrm{NH}_{3}^{+}\left(\dot{X}^{2} A_{2}^{\prime \prime}\right)\) has been observed on the absorption spectrum recorded by using a difference frequency laser spectrometer combined with the velocity modulation technique in the region between 3500 and \(
High-resolution Fourier transform spectra of monoisotopic \(\mathrm{H}_{2}{ }^{80} \mathrm{Se}\) have been recorded in the 10 - and \(4.3-\mu \mathrm{m}\) spectral regions where the \(\nu_{2}\) and the \(2 \nu_{2}, \nu_{1}\), and \(\nu_{3}\) bands of this molecule absorb, respectively. The \((0 \mid