The rotational \(J=1-0\) transitions of nine different isotopomers of ethinylisocyanide. \(\mathrm{H} \cdots \mathrm{C} \equiv \mathrm{C}-\mathrm{NC}\), were measured with high resolution using a pulsed molecular beam microwave Fourier transform (MB-MWFT) spectrometer. The analysis of the complex hy
The rotational spectrum, nuclear spin—spin coupling, nuclear quadrupole coupling, and molecular structure of KrHF
✍ Scribed by L.W. Buxton; E.J. Campbell; M.R. Keenan; T.J. Balle; W.H. Flygare
- Publisher
- Elsevier Science
- Year
- 1981
- Tongue
- English
- Weight
- 553 KB
- Volume
- 54
- Category
- Article
- ISSN
- 0301-0104
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Partially resolved hyperfine structure arising from H,Br nuclear-spin-nuclear-spin coupling has been identified in each Brnuclear quadrupole component of the l,,, +O,,,, transition of H,O...HBr. Lineshape simulation leads to a value of D,,= -23 (2) kHz for the spin-spin coupling constant for both H,
Pulsed-nozzle, Fourier-transform microwave spectroscopy has been used to establish the ground-state spectroscopic constants &,=2734.6105(11) MHz, D,=1.49(7) kHz, DIK=35.3(4) kHz and Dj$= -230(g) kHz for the dimer (CH,),"N...HF from its rotational spectrum. The H,19F spin-spin coupling constant D zF