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Chemical Science
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May 3, 2018
Direct observation of vibrational energy dispersal <i>via</i> methyl torsions
Adrian M Gardner, William D Tuttle, Laura E Whalley, et al.
The Journal of Chemical Physics
|
September 1, 2019
Vibration-modified torsional potentials and vibration-torsion ("vibtor") levels in the m-fluorotoluene cation
David J Kemp, Elizabeth F Fryer, Alexander R Davies, et al.
The Journal of Chemical Physics
|
April 20, 2005
Accurate potential energy curves for HeO-, NeO-, and ArO-: spectroscopy and transport coefficients
Larry A Viehland, Rhonda Webb, Edmond P F Lee, et al.
The Journal of Chemical Physics
|
February 8, 2006
Interaction potentials and spectroscopy of Hg+.Rg and Cd+.Rg and transport coefficients for Hg+ and Cd+ in Rg (Rg=He-Rn)
Enming Qing, Larry A Viehland, Edmond P F Lee, et al.
The Journal of Chemical Physics
|
March 5, 2014
Comparison of the interactions in the rare gas hydride and Group 2 metal hydride anions
Joe P Harris, Daniel R Manship, W H Breckenridge, et al.
The Journal of Chemical Physics
|
February 20, 2008
Interactions between anionic and neutral bromine and rare gas atoms
Alexei A Buchachenko, Timur A Grinev, Timothy G Wright, et al.
The Journal of Chemical Physics
|
April 5, 2011
Near-infrared spectroscopy of LiNH3: first observation of the electronic spectrum
Luigi Varriale, Nitika Bhalla, Nicola M Tonge, et al.
The Journal of Physical Chemistry. A
|
July 17, 2009
Interaction potentials, spectroscopy, and transport properties of the Br+-RG systems (RG = He-Ar)
Alexei A Buchachenko, Timothy G Wright, Edmond P F Lee, et al.
The Journal of Physical Chemistry. A
|
July 30, 2009
Theoretical study of Mg+-X and [X-Mg-Y]+ complexes important in the chemistry of ionospheric magnesium (X, Y = H2O, CO2, N2, O2, and O)
Richard J Plowright, Thomas J McDonnell, Timothy G Wright, et al.
The Journal of Chemical Physics
|
April 10, 2008
Transport of O+ through argon gas
Daniel M Danailov, Larry A Viehland, Rainer Johnsen, et al.
Page
of 9
Search research articles
Search
Showing results (31-40 of 84) with videos related to
Sort By:
Page
of 9
Chemical Science
|
May 3, 2018
Direct observation of vibrational energy dispersal <i>via</i> methyl torsions
Adrian M Gardner, William D Tuttle, Laura E Whalley, et al.
The Journal of Chemical Physics
|
September 1, 2019
Vibration-modified torsional potentials and vibration-torsion ("vibtor") levels in the m-fluorotoluene cation
David J Kemp, Elizabeth F Fryer, Alexander R Davies, et al.
The Journal of Chemical Physics
|
April 20, 2005
Accurate potential energy curves for HeO-, NeO-, and ArO-: spectroscopy and transport coefficients
Larry A Viehland, Rhonda Webb, Edmond P F Lee, et al.
The Journal of Chemical Physics
|
February 8, 2006
Interaction potentials and spectroscopy of Hg+.Rg and Cd+.Rg and transport coefficients for Hg+ and Cd+ in Rg (Rg=He-Rn)
Enming Qing, Larry A Viehland, Edmond P F Lee, et al.
The Journal of Chemical Physics
|
March 5, 2014
Comparison of the interactions in the rare gas hydride and Group 2 metal hydride anions
Joe P Harris, Daniel R Manship, W H Breckenridge, et al.
The Journal of Chemical Physics
|
February 20, 2008
Interactions between anionic and neutral bromine and rare gas atoms
Alexei A Buchachenko, Timur A Grinev, Timothy G Wright, et al.
The Journal of Chemical Physics
|
April 5, 2011
Near-infrared spectroscopy of LiNH3: first observation of the electronic spectrum
Luigi Varriale, Nitika Bhalla, Nicola M Tonge, et al.
The Journal of Physical Chemistry. A
|
July 17, 2009
Interaction potentials, spectroscopy, and transport properties of the Br+-RG systems (RG = He-Ar)
Alexei A Buchachenko, Timothy G Wright, Edmond P F Lee, et al.
The Journal of Physical Chemistry. A
|
July 30, 2009
Theoretical study of Mg+-X and [X-Mg-Y]+ complexes important in the chemistry of ionospheric magnesium (X, Y = H2O, CO2, N2, O2, and O)
Richard J Plowright, Thomas J McDonnell, Timothy G Wright, et al.
The Journal of Chemical Physics
|
April 10, 2008
Transport of O+ through argon gas
Daniel M Danailov, Larry A Viehland, Rainer Johnsen, et al.
Page
of 9