Author Institution: Dept. of Chemistry, University of RochesterDipole moment measurements for a number of van der Waals complexes made up of non- polar constituents have been made, giving results ranging from 0.03 D to 0.5 D. However, the signs of these induced dipole moments have not been determined. The sign of the induced dipole moment can be determined for a complex which contains a monomer having a small dipole moment of known sign. Complexes containing a non-polar molecule and carbon monoxide provide the means to study induced moments with relatively few effects from internal motions. The dipole moment of $CO_{2}-CO$ has been obtained from radio frequency transitions measured using molecular beam electric resonance spectroscopy. A 20 ...
$^{1}$. D.D. Nelson, Jr., G.T. Fraser, and W. Klemperer, J.Chem.Phys. 82, 4483 (1985). $^{2}$. F.A. ...
Author Institution: Department of Chemistry, Harvard UniversityThe spectrum of $Ar-CO_{2}$ from 500 ...
$^{1}$ B. Fabricant, D. Krieger, and J. S. Muenter, J. Chem. Phys. (to be published).Author Institut...
Author Institution: Research Laboratory for Inorganic Chemistry, Hungarian Academy of Sciences; Depa...
The [mu]a and [mu]b electric dipole moment components of the Ne-OCS, Ar-OCS, and Kr-OCS van der Waal...
Author Institution: Department of Chemistry, Harvard UniversityThe electric dipole moments of $d^{3}...
Author Institution: Department of Chemistry, Harvard UniversityThe electric dipole moments of $d^{3}...
Author Institution: National Bureau of StandardsThere has been a great deal of emphasis recently on ...
Author Institution: Department of Chemistry, Wesleyan University; Molecular Spectroscopy Division, N...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
Preferred signs for the ∂p/∂Qi of Br2CO have been determined using semiempirical CNDO theory. The co...
$^{1}$ John S. Muenter, J. Chem. Phys. 48, 4544 (1968). Electric dipole moment of carbonyl sulfide. ...
$^{1}$. D.D. Nelson, Jr., G.T. Fraser, and W. Klemperer, J.Chem.Phys. 82, 4483 (1985). $^{2}$. F.A. ...
$^{1}$. D.D. Nelson, Jr., G.T. Fraser, and W. Klemperer, J.Chem.Phys. 82, 4483 (1985). $^{2}$. F.A. ...
Author Institution: Department of Chemistry, Harvard UniversityThe spectrum of $Ar-CO_{2}$ from 500 ...
$^{1}$ B. Fabricant, D. Krieger, and J. S. Muenter, J. Chem. Phys. (to be published).Author Institut...
Author Institution: Research Laboratory for Inorganic Chemistry, Hungarian Academy of Sciences; Depa...
The [mu]a and [mu]b electric dipole moment components of the Ne-OCS, Ar-OCS, and Kr-OCS van der Waal...
Author Institution: Department of Chemistry, Harvard UniversityThe electric dipole moments of $d^{3}...
Author Institution: Department of Chemistry, Harvard UniversityThe electric dipole moments of $d^{3}...
Author Institution: National Bureau of StandardsThere has been a great deal of emphasis recently on ...
Author Institution: Department of Chemistry, Wesleyan University; Molecular Spectroscopy Division, N...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
The ground state of octahedral Co(II) complex is 4T1g. The high spin octahedral Co(II) Complexes hav...
Preferred signs for the ∂p/∂Qi of Br2CO have been determined using semiempirical CNDO theory. The co...
$^{1}$ John S. Muenter, J. Chem. Phys. 48, 4544 (1968). Electric dipole moment of carbonyl sulfide. ...
$^{1}$. D.D. Nelson, Jr., G.T. Fraser, and W. Klemperer, J.Chem.Phys. 82, 4483 (1985). $^{2}$. F.A. ...
$^{1}$. D.D. Nelson, Jr., G.T. Fraser, and W. Klemperer, J.Chem.Phys. 82, 4483 (1985). $^{2}$. F.A. ...
Author Institution: Department of Chemistry, Harvard UniversityThe spectrum of $Ar-CO_{2}$ from 500 ...
$^{1}$ B. Fabricant, D. Krieger, and J. S. Muenter, J. Chem. Phys. (to be published).Author Institut...