Zobrazeno 1 - 10
of 95
pro vyhledávání: '"M. D. Allen"'
Autor:
M. D. Allen
Publikováno v:
Cahiers Victoriens et Edouardiens, Vol 97 (2023)
Externí odkaz:
https://doaj.org/article/a497808b9a4b4d7dbcf002dd9cc92f21
Autor:
M. D. Allen
Publikováno v:
World Literature Today. 94:83-84
Autor:
M. D. Allen
Publikováno v:
World Literature Today. 94:102-103
Autor:
M. D. Allen
Publikováno v:
World Literature Today. 91:98-99
Autor:
M. D. Allen
Publikováno v:
Studies in Travel Writing. 17:96-98
Encountering Islam. Joseph Pitts: An English Slave in 17th-Century Algiers and Mecca. A critical edition, with biographical introduction and notes, of Joseph Pitts of Exeter's A Faithful Account of...
Publikováno v:
Applied Physics B. 73:257-260
A three-laser heterodyne system was used to measure the frequencies of twelve optically pumped laser emissions from 13CH3OH in the far-infrared (FIR) region. These emissions, ranging from 54 to 142 μm, are reported with fractional uncertainties up t
Publikováno v:
Applied Physics B. 72:815-818
A significantly improved far-infrared laser has been used to generate optically pumped laser emissions from 26 to 150 μm for CD3OH. Using an X–V-pumping geometry, several new laser emissions have been found for CD3OH. In addition, an increase in p
Publikováno v:
Canadian Journal of Physics. 79:389-408
The far-infrared laser magnetic resonance spectrum (FIR LMR) of the v5 bending vibrational transition of DCCN in its X3 Σ state is reported. The DCCN radical was produced inside the spectrometer cavity by the reaction of deuterated acetonitrile wi
Publikováno v:
Applied Physics B. 72:241-244
We have reinvestigated 13CH3OH as a source of far-infrared (FIR) laser emission using a CO2 laser as a pumping source. Thirty new FIR laser lines in the range 36.5 μm to 202.6 μm were observed and characterized. Five of them have wavelengths betwee
Publikováno v:
International Journal of Infrared and Millimeter Waves. 21:725-730
A far-infrared laser cavity designed to favor short-wavelength laser lines was used to generate optically-pumped far-infrared laser radiation. New far-infrared laser lines were discovered in hydrazine, heavy water, ammonia, and several short-waveleng