In our previous article, we arrived at an essential relationship for T the classical vibrational period of a given diatomic molecule, at the total electronic energy E-, i.e., T = [4pi(2)/(rootn(1)n(2)h)] rootgM(0)m(e) R-2, where M-0 to is the reduced mass of the nuclei; m(3) is the mass of the electron; R is the internuclear distance: g is a dimensionless and relativistically invariant coefficient, roughly around unity; and n(1) and n(2) are the principal quantum numbers of electrons making up the bond(s) of the diatomic molecule, which, because of quantum defects. are not integer numbers. The above relationship holds generally. It essentially yields T similar to R 2 for the classical vibrational period versus the square of the internuclear...
It has been found that for diatomic molecules the relation between the bond force constant, k0, and ...
Abstract. We present a systematic understanding of the rotational structure of a long-range (vibrati...
AbstractClassical dynamical computations for ground state H22, H21, H23, H1, H2, H1, H3, Li27, B29, ...
We consider the quantum mechanical description of a diatomic molecule of "electronic mass" m0e, "int...
We consider the quantum-mechanical description of a diatomic molecule of electronic mass m(0e), inte...
$^{\dagger}$Commonwealth Fund Fellow, 1956-57.Author Institution: Laboratory of Molecular Structure ...
© 2021 Informa UK Limited, trading as Taylor & Francis Group.In this contribution, we show that the ...
$^{1}$ G.V. Calder and Klaus Ruedenberg, J. Chem. Phys., 49, 5399 (1968).""Author Institution: Ames ...
The ground and very low-lying excited states of all 120 first- and second-row diatomic molecules are...
We prove that the study of the vibrational eigenfunctions of a diatomic molecule is reduced to that ...
We prove that the study of the vibrational eigenfunctions of a diatomic molecule is reduced to that ...
Author Institution: Mason Laboratory, Yale UniversityThe Born-Oppenheimer theory of neutral diatomic...
We present a systematic understanding of the rotational structure of a long-range (vibrationally hig...
Author Institution: Mason Laboratory, Yale UniversityThe Born-Oppenheimer theory of neutral diatomic...
It has been found that for diatomic molecules the relation between the bond force constant, k0, and ...
It has been found that for diatomic molecules the relation between the bond force constant, k0, and ...
Abstract. We present a systematic understanding of the rotational structure of a long-range (vibrati...
AbstractClassical dynamical computations for ground state H22, H21, H23, H1, H2, H1, H3, Li27, B29, ...
We consider the quantum mechanical description of a diatomic molecule of "electronic mass" m0e, "int...
We consider the quantum-mechanical description of a diatomic molecule of electronic mass m(0e), inte...
$^{\dagger}$Commonwealth Fund Fellow, 1956-57.Author Institution: Laboratory of Molecular Structure ...
© 2021 Informa UK Limited, trading as Taylor & Francis Group.In this contribution, we show that the ...
$^{1}$ G.V. Calder and Klaus Ruedenberg, J. Chem. Phys., 49, 5399 (1968).""Author Institution: Ames ...
The ground and very low-lying excited states of all 120 first- and second-row diatomic molecules are...
We prove that the study of the vibrational eigenfunctions of a diatomic molecule is reduced to that ...
We prove that the study of the vibrational eigenfunctions of a diatomic molecule is reduced to that ...
Author Institution: Mason Laboratory, Yale UniversityThe Born-Oppenheimer theory of neutral diatomic...
We present a systematic understanding of the rotational structure of a long-range (vibrationally hig...
Author Institution: Mason Laboratory, Yale UniversityThe Born-Oppenheimer theory of neutral diatomic...
It has been found that for diatomic molecules the relation between the bond force constant, k0, and ...
It has been found that for diatomic molecules the relation between the bond force constant, k0, and ...
Abstract. We present a systematic understanding of the rotational structure of a long-range (vibrati...
AbstractClassical dynamical computations for ground state H22, H21, H23, H1, H2, H1, H3, Li27, B29, ...