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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 79, 1993 - Issue 4
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Original Articles

The infrared spectrum of the FeH radical by laser magnetic resonance

, , , &
Pages 835-845 | Received 19 Nov 1992, Accepted 27 Nov 1992, Published online: 22 Aug 2006

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Read on this site (3)

. (2007) Editorial. Molecular Physics 105:5-7, pages 451-453.
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Jonathan Tennyson, Gregory J. Harris, Robert J. Barber, Santina la Delfa, Boris A. Voronin, B. M. Kaminsky & Ya. V. Pavlenko. (2007) Molecular line lists for modelling the opacity of cool stars. Molecular Physics 105:5-7, pages 701-714.
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DANIELF. HULLAH, RICHARDF. BARROW & JOHNM. BROWN. (1999) Low-lying energy levels of the FeH molecule. Molecular Physics 97:1-2, pages 93-103.
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Articles from other publishers (16)

Shelby D. Dickerson & Nathan J. DeYonker. (2017) Gas phase electronic structure of the 3d metal monoacetylides (MCCH, M = Sc .. Zn). International Journal of Quantum Chemistry 117:2, pages 104-128.
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Nathan J. DeYonker & Wesley D. Allen. (2012) Taming the low-lying electronic states of FeH. The Journal of Chemical Physics 137:23.
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Michael Jackson, Lyndon R. Zink, Jonathan P. Towle, Neil Riley & John M. Brown. (2009) The rotational spectrum of the FeD radical in its X Δ4 state, measured by far-infrared laser magnetic resonance. The Journal of Chemical Physics 130:15.
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John M. Brown, Helga Körsgen, Stuart P. Beaton & Kenneth M. Evenson. (2006) The rotational and fine-structure spectrum of FeH, studied by far-infrared laser magnetic resonance. The Journal of Chemical Physics 124:23.
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Timothy C. Steimle, Jinhai Chen, Jeremy J. Harrison & John M. Brown. (2006) A molecular-beam optical Stark study of lines in the (1,0) band of the FΔ7∕24-XΔ7∕24 transition of iron monohydride, FeH. The Journal of Chemical Physics 124:18.
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M. Dulick, C. W. Bauschlicher, Jr.Adam Burrows, C. M. Sharp, R. S. Ram & Peter Bernath. (2003) Line Intensities and Molecular Opacities of the FeH F 4 Δ i – X 4 Δ i Transition . The Astrophysical Journal 594:1, pages 651-663.
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Jon Baker & Peter Pulay. (2003) Assessment of the OLYP and O3LYP density functionals for first-row transition metals. Journal of Computational Chemistry 24:10, pages 1184-1191.
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Stephen M. Kermode & John M. Brown. (2002) Identification of New Low-Lying Electronic States of the FeF Radical. Journal of Molecular Spectroscopy 213:2, pages 158-169.
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Jie Lei & Paul J. Dagdigian. (2000) Molecular beam study of the Π6X 6Δ electronic transition in FeCl. The Journal of Chemical Physics 112:23, pages 10221-10227.
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Helga Körsgen, Wolfgang Urban & John M. Brown. (1999) The infrared spectrum of FeH2, studied in the gas phase by laser magnetic resonance. The Journal of Chemical Physics 110:8, pages 3861-3869.
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Damian M. Goodridge, Daniel F. Hullah & John M. Brown. (1998) Rotational analysis and assignment of the 630 nm band system of FeH to the e 6Π–c 6Σ+ transition. The Journal of Chemical Physics 108:2, pages 428-435.
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Eriko Kagi, Yasuko Kasai, Hans Ungerechts & Kentarou Kawaguchi. (1997) Astronomical Search and Laboratory Spectroscopy of the FeCO Radical. The Astrophysical Journal 488:2, pages 776-780.
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M.D. Allen, B.Z. Li & L.M. Ziurys. (1997) A millimeter/sub-millimeter-wave spectroscopic study of the FeCl radical (X6Δi). Chemical Physics Letters 270:5-6, pages 517-526.
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Damian M. Goodridge, Robert T. Carter, John M. Brown & Timothy C. Steimle. (1997) Rotational analysis and assignment of the green band system of FeH to the e 6Π–a 6Δ transition . The Journal of Chemical Physics 106:12, pages 4823-4831.
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M. D. Allen & L. M. Ziurys. (1997) Millimeter-wave spectroscopy of FeF (X 6Δi) : Rotational analysis and bonding study . The Journal of Chemical Physics 106:9, pages 3494-3503.
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Helga Körsgen, Petra Mürtz, Klaus Lipus, Wolfgang Urban, Jonathan P. Towle & John M. Brown. (1996) The identification of the FeH 2 radical in the gas phase by infrared spectroscopy . The Journal of Chemical Physics 104:12, pages 4859-4861.
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