The microwave spectrum of the nitromethane-water complex \(\left(\mathrm{CH}_{3} \mathrm{NO}_{2}-\mathrm{H}_{2} \mathrm{O}\right)\) has been studied with a pulsed-beam Fourier-transform Fabry-Perot-cavity spectrometer. Both \(a\)-type and \(h\)-type transitions were observed for the \(A\) state of t
Electric-resonance optothermal spectrum of (H2O)2: Microwave spectrum of the K = 1-0 subband for the E2± states
✍ Scribed by G.T. Fraser; R.D. Suenram; L.H. Coudert; R.S. Frye
- Publisher
- Elsevier Science
- Year
- 1989
- Tongue
- English
- Weight
- 259 KB
- Volume
- 137
- Category
- Article
- ISSN
- 0022-2852
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-0) subbands at 4641 and 445.6 nm are idenlified in the fluorescence exciralion specua or NO, roIa1ionally cooled in a supersonic jet. The origins of both bands agree well with a calculakm based on rhe theory of Ihe Renner-Teller effect. and the Mbrarional signmenu ui = 14 and 16 are given IO the up
the perturbation formula are evident even at the J= 6 Miliimetre wave spectra of trioxane, (CHzO)g , in its ground state and several excited vibrational states have been reported by Bellet-et al. [l] \_ Measured rotational transitions of two degenerate states v,(E) = 1 and u2(E) = 1 were analysed u