The pure rotational spectra of seven isotopomers of hafnium monosulfide have been measured for several vibrational states. For the most abundant isotopomer, 180 Hf 32 S, the J = 1 -0, J = 2 -1, and J = 3 -2 transitions were recorded up to the sixth vibrationally excited state. The constants Y 01 , Y
14N Hyperfine Structure in the Pure Rotational Spectrum of24Mg14N12C
β Scribed by Kaley A. Walker; Michael C.L. Gerry
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 149 KB
- Volume
- 189
- Category
- Article
- ISSN
- 0022-2852
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β¦ Synopsis
The pure rotational spectrum of 24 Mg 14 N 12 C, between 11.9 and 23.9 GHz, has been measured using a pulsed jet Fourier transform microwave spectrometer. The hyperfine structure due to the 14 N nucleus has been measured, and the nuclear quadrupole coupling, Fermi contact, and dipole-dipole interaction constants have been determined. The ionic character of the metal-isocyanide bond has been investigated through the nuclear quadrupole and magnetic hyperfine parameters.
π SIMILAR VOLUMES
The J Γ 1-0 rotational transition of 14 NF 3 has been measured at high resolution in a pulsed jet Fourier transform microwave spectrometer. The transition is split into three major components due to the nuclear quadrupole coupling constant of the 14 N nucleus; these in turn are further split into hy
The self-broadening coefficients and the intensities of 29 lines in the Ξ½ 1 band of cyanogen chloride ( 35 Cl 12 C 14 N) have been measured at high resolution in the range 699-736 cm -1 , using a tunable diode-laser spectrometer. The collisional widths and most of the intensities are obtained by fit