Zobrazeno 1 - 10
of 23
pro vyhledávání: '"W. E. Blass"'
Publikováno v:
ChemInform. 22
Autor:
G. Halsey, W. E. Blass
Publikováno v:
Applied optics. 16(2)
We report on our molecular spectroscopy effort to determine frequencies, intensities, shapes and broadening in fundamental and low-lying hot band transitions for molecules of interest to contemporary planetary atmospheric investigations. The laborato
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::dbd5d8dbce023e5e61287fbd6ccb7777
The absolute infrared intensities of transitions in the _9 band of ethane have long been a subject of controversy (Gunson 1996, Daunt 1984, Henry 1983, Auwera 2007, and references therein). Improving the ethane 12 µm database is one of the goals o
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::bca7f92ede00ae30440fc7a33db00dbb
Autor:
D.E. Jennings, W. E. Blass
Publikováno v:
Journal of Molecular Spectroscopy. 55:445-451
The ν2 fundamental band of CHD3, centered near 2143 cm−1, has been recorded at a resolution of 0.015–0.025 cm−1. Analysis of ground-state combination differences has yielded well-determined values for the ground-state molecular parameters B0,
Publikováno v:
The Journal of Chemical Physics. 77:2728-2744
Diode laser spectra of most of the Q branches of the ν9 band of ethane from RQ8–PQ15 have been recorded. The Q branches RQ0–RQ4 were deconvoluted to yield an effective resolution of (0.5–1.0)×10−3 cm−1 FWHM. Torsional splittings were obse
Publikováno v:
Applied Spectroscopy. 34:369-372
A technique for the elimination of baseline variation is discussed and illustrated. The method involves ultra-low frequency filtering in the frequency domain (transform space) and is illustrated by applying it to several diode laser spectra of C2H6 (
Publikováno v:
Journal of Molecular Spectroscopy. 69:179-198
Previous studies of the parallel bands 2ν2 and 2ν 5 0 of CH3Br by the two first authors have been completed by the analysis of the weaker perpendicular band ν2 + ν5, centered near 2745 cm−1. It is well known that the v2 = 1 and v5 = 1 states of
Publikováno v:
Journal of Molecular Spectroscopy. 79:151-157
The absorption spectrum of ethane was recorded between 1940 and 2152 cm−1 at a resolution of 0.025 cm−1. Ground state parameters were determined from the principal band in this region, ν9 + ν12(Eu): B0 = 0.6630353 cm−1, D0J = 1.0406 × 10−6
Autor:
F. N. Masri, W. E. Blass
Publikováno v:
The Journal of Chemical Physics. 54:2066-2069
A resonance calculation computer program has been applied to a quantitative investigation of the effects of strong l‐type resonances on the envelopes of degenerate (E) infrared bands of symmetric tops. The immediate object of these calculations has