Results 231 to 240 of about 271,562 (267)
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Journal of Molecular Spectroscopy, 1987
Abstract A spectrum, found in the 360- to 420-nm region following hollow-cathode excitation of InCl 3 /In/He mixtures has been attributed to the InCl + ion. Sixteen bands have been classified for the system which has been identified through rotational analysis to be B 2 Σ- X 2 Σ, consistent with photoelectron observations by Berkowitz and Dehmer.
Walter J. Balfour, K.S. Chandrasekhar
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Abstract A spectrum, found in the 360- to 420-nm region following hollow-cathode excitation of InCl 3 /In/He mixtures has been attributed to the InCl + ion. Sixteen bands have been classified for the system which has been identified through rotational analysis to be B 2 Σ- X 2 Σ, consistent with photoelectron observations by Berkowitz and Dehmer.
Walter J. Balfour, K.S. Chandrasekhar
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Journal of Molecular Spectroscopy, 1972
Abstract A new system of emission bands has been observed in the visible region of the spectrum. The bands exhibit the characteristic rotational structure of a 3 Π i - 3 Π i electronic transition. Rotational analysis and isotopic studies of these bands indicate that the carrier of the spectrum is the species AlN. The rotational analyses of the (0-0)
J.D Simmons, J.K McDonald
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Abstract A new system of emission bands has been observed in the visible region of the spectrum. The bands exhibit the characteristic rotational structure of a 3 Π i - 3 Π i electronic transition. Rotational analysis and isotopic studies of these bands indicate that the carrier of the spectrum is the species AlN. The rotational analyses of the (0-0)
J.D Simmons, J.K McDonald
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Secondary-electron-emission spectrum of diamond
Physical Review B, 1991The secondary-electron-emission spectrum has been measured for diamond (110) type 2{ital a}. Peaks at 6, 14.4, and 22.9 eV with respect to the top of the valence band were observed. The 6-eV peak was associated with the conduction-band minimum, whereas the 14.4- and 22.9-eV peaks were associated with electronic transitions to higher conduction bands ...
, Hoffman, , Folman, , Prawer
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The Journal of Chemical Physics, 1959
Emission bands of TeO have been discovered on the long wavelength side of previously reported bands. Wavelengths, intensities, and square arrays of the bands are given.
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Emission bands of TeO have been discovered on the long wavelength side of previously reported bands. Wavelengths, intensities, and square arrays of the bands are given.
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Nature, 1958
IN the course of a study of the luminescence of gases irradiated by X-rays (to be published), some unknown bands were observed from nitrous oxide. All the other gases studied emit well-known band systems, usually of the parent gas or its ion. Gases at pressures between 1 and 700 mm. were irradiated with soft X-rays (45 kV. peak) from a beryllium-window
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IN the course of a study of the luminescence of gases irradiated by X-rays (to be published), some unknown bands were observed from nitrous oxide. All the other gases studied emit well-known band systems, usually of the parent gas or its ion. Gases at pressures between 1 and 700 mm. were irradiated with soft X-rays (45 kV. peak) from a beryllium-window
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On the emission spectrum of SiBr4
Proceedings of the Indian Academy of Sciences - Section A, 1937R. K. Asundi, S. Mujtaba Karim
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