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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 45, 1982 - Issue 2
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Original Articles

Rotational analysis of the v2 + v6±1, v5∓1 + v6∓1 and v5∓1 + v6±1 interacting infrared bands of methyl bromide

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Pages 295-307 | Received 17 Jul 1981, Accepted 03 Sep 1981, Published online: 23 Aug 2006

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Read on this site (5)

Mina Ouahman, Najate Ben Sari-Zizi, Guy Guelachvili & Claude Alamichel. (1992) Anharmonic resonances between the v 1 + v ±1 6, v 3 + v ±1 5 + 2v 0 6 and v 3 + v ∓1 5 + 2v ±2 6 vibrational bands of CH3 79Br. Molecular Physics 76:6, pages 1477-1488.
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WilliamE. Buss. (1987) Systematic Approach to the Analysis of Perturbed Spectra. Part I: Statement of the Problem. Applied Spectroscopy Reviews 23:1-2, pages 1-58.
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F. Lattanzi, C. di Lauro & G. Guelachvili. (1987) Rotational analysis and interaction mechanism of the 2020 to 2440 cm-1 infrared spectrum of CH3I. Molecular Physics 60:1, pages 33-43.
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Articles from other publishers (15)

Carlo di Lauro. 2020. Rotational Structure in Molecular Infrared Spectra. Rotational Structure in Molecular Infrared Spectra 117 201 .
Carlo di Lauro. 2013. Rotational Structure in Molecular Infrared Spectra. Rotational Structure in Molecular Infrared Spectra 119 203 .
Marlon Ramos & Brian J. Drouin. (2011) Submillimeter spectrum of methyl bromide (CH3Br). Journal of Molecular Spectroscopy 269:2, pages 187-192.
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Najate Ben Sari-Zizi & Claude Alamichel. (1997) Rovibrational analysis of weaker bands (ν3 + ν4 + ν6, ν2 + ν3 + ν4 − ν3, ν3 + ν4 + ν5 − ν3 and ν1 + ν5) of CH379Br in the range of 2.5 μm. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 53:11, pages 1677-1690.
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Najate Ben Sari-Zizi, Guy Guelachvili & Claude Alamichel. (1996) High-resolution FTIR study of the v2 + v4 and v4 + v5 rovibrational bands of CH379Br between 4200 and 4600 cm−1. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 52:5, pages 483-493.
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Winfried Schneider & Walter Thiel. (1992) Ab initio calculation of anharmonic force fields for the methyl, silyl, germyl, and stannyl halides. Chemical Physics 159:1, pages 49-66.
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Winfried Schneider & Walter Thiel. (1989) Anharmonic force fields from analytic second derivatives: Method and application to methyl bromide. Chemical Physics Letters 157:4, pages 367-373.
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Jun Sakai & Mikio Katayama. (1988) Laser Stark spectroscopy of the 2ν62−ν6 band of CH3Br: determination of A0, DK0 and HK0. Journal of Molecular Structure 190, pages 113-123.
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Mina Ouahman, Najate Bensari-Zizi, Guy Guelachvili & Claude Alamichel. (1988) High-resolution FTIR study of the ν1 + ν3 and 2ν3 + ν5 + ν6 rovibrational bands of methyl bromide. Journal of Molecular Spectroscopy 129:2, pages 276-283.
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Mina Ouahman & Najate Ben Sari-Zizi. (1988) Etude rovibrationnelle sous haute résolution de la bande ν3 + ν4 du bromure de méthyle. Redétermination de la plus basse fondamentale ν3 par combinaison avec la bande chaude ν3 + ν4 - ν3. Journal de Physique 49:10, pages 1715-1723.
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T. Al Adlouni & G. Graner. (1988) Simultaneous analysis of mid-infrared and far-infrared propyne laser emissions. Journal of Molecular Spectroscopy 127:1, pages 186-199.
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Hamid Najib, Najate Bensari-Zizi, Guy Guelachvili & Claude Alamichel. (1985) Study of the ν2 + ν3 and 2ν6 infrared bands of CH379Br and CH381Br. Journal of Molecular Spectroscopy 114:2, pages 321-335.
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H. Najib & N. Ben Sari-Zizi. (1985) Analyse rotationnelle de la bande infrarouge 2v3 du bromure de méthyle. Journal de Physique 46:12, pages 2075-2081.
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C. Di Lauro & B. Velino. (1984) Evidence for theA 1 andA 2 components ofv 4+v 5 the infrared spectrum of methyl bromide. Acta Physica Hungarica 55:1-4, pages 127-134.
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R. Anttila, C. Betrencourt-Stirnemann & J. Dupré. (1983) The infrared bands ν2 and ν5 of CH3Br with Coriolis interaction. Journal of Molecular Spectroscopy 100:1, pages 54-74.
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