John Morrison Galbraith

Affiliations: 
Marist College, Poughkeepsie, NY, United States 
Area:
Computational Chemistry, Theoretical Chemistry
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"John Galbraith"
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Andrew DeBlase research assistant 2005-2005 Marist College
Andrew M. James research assistant 2012-2014 Marist College
Croix J. Laconsay research assistant 2015-2017 Marist College
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Publications

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Shaik S, Danovich D, Galbraith JM, et al. (2019) Charge-Shift Bonding: A New and Unique Form of Bonding. Angewandte Chemie (International Ed. in English)
Galbraith JM, Schreiner PR, Harris N, et al. (2019) A valence bond study of the Bergman cyclization: geometric features, resonance energy, and nucleus-independent chemical shift (NICS) values Chemistry (Weinheim An Der Bergstrasse, Germany). 6: 1446-54
Nemes CT, Laconsay CJ, Galbraith JM. (2018) Hydrogen bonding from a valence bond theory perspective: the role of covalency. Physical Chemistry Chemical Physics : Pccp. 20: 20963-20969
James AM, Laconsay CJ, Galbraith JM. (2017) Charge-Shift Corrected Electronegativities and the Effect of Bond Polarity and Substituents on Covalent-Ionic Resonance Energy. The Journal of Physical Chemistry. A
Laconsay CJ, Galbraith JM. (2017) A valence bond theory treatment of tetrel bonding interactions Computational and Theoretical Chemistry. 1116: 202-206
Laconsay CJ, James AM, Galbraith JM. (2016) The Effect of Lone Pairs on Molecular Resonance Energy. The Journal of Physical Chemistry. A
Galbraith JM, James AM, Nemes CT. (2014) The effect of diffuse basis functions on valence bond structural weights Molecular Physics. 112: 654-660
Galbraith JM. (2010) The effect of orbital type and active space size on valence bond structure weights and bond dissociation energies Molecular Physics. 108: 2551-2558
DeBlase A, Licata M, Galbraith JM. (2008) A valence bond study of three-center four-electron pi bonding: electronegativity vs electroneutrality. The Journal of Physical Chemistry. A. 112: 12806-11
Galbraith JM. (2007) On the role of d orbital hybridization in the chemistry curriculum Journal of Chemical Education. 84: 783-787
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