The ideal gas heat capacity of sodium atoms in the vapor phase is calculated to high temperatures using statistical mechanics. Since there are, in principle, an infinite number of atomic energy levels, the partition function and the heat capacity will grow very large unless the summation over energy levels is constrained as temperature increases. At higher temperatures, the increasing size of the atoms, which is a consequence of the increased population of highly excited energy levels, is used as a mechanism for limiting the summation over energy levels. The “ Mathematical expression” and “Bethe” procedures for cutting off the summation over energy levels will be discussed, and the results obtained using the two methods will be compared. In...
Using an improved ice calorimeter and furnace, the enthalpy changes of two samples of pure sodium ha...
In an earlier simple “group contribution” method, molar volumes of organic and inorganic materials w...
The vibrational properties of atomic clusters are a fingerprint of their structures and can be used ...
Including the contribution of excited state atoms can improve calculations of dilute gaseous transpo...
Transport properties of dilute monatomic gases depend on the two body interaction potentials between...
The set of high-temperature thermodynamic properties for sodium in the two-phase and subcooled-liqui...
It is suggested that the internal energy of the latent heat of vaporization is completely utilized b...
Three computer codes - SODIPROP, NAVAPOR, and NASUPER - were written in order to calculate a self-co...
Author Institution: Joint Institute for Laboratory Astrophysics, University of Colorado and National...
The stresses and the elastic constants of bcc sodium are calculated by molecular dynamics (MD) for t...
We study the equation of state of sodium using the molecular dy- ",, namics technique whereby t...
The thermodynamic properties for the saturated and superheated phases of sodium are presented in tab...
A model for the temperature dependence of the isobaric heat capacity of associated pure liquids C-p,...
A five-term Houston's formula is used to calculate the vibrational spectrum of sodium on the basis o...
A convergent series representation for the internal partition function of polyelectronic atoms is ob...
Using an improved ice calorimeter and furnace, the enthalpy changes of two samples of pure sodium ha...
In an earlier simple “group contribution” method, molar volumes of organic and inorganic materials w...
The vibrational properties of atomic clusters are a fingerprint of their structures and can be used ...
Including the contribution of excited state atoms can improve calculations of dilute gaseous transpo...
Transport properties of dilute monatomic gases depend on the two body interaction potentials between...
The set of high-temperature thermodynamic properties for sodium in the two-phase and subcooled-liqui...
It is suggested that the internal energy of the latent heat of vaporization is completely utilized b...
Three computer codes - SODIPROP, NAVAPOR, and NASUPER - were written in order to calculate a self-co...
Author Institution: Joint Institute for Laboratory Astrophysics, University of Colorado and National...
The stresses and the elastic constants of bcc sodium are calculated by molecular dynamics (MD) for t...
We study the equation of state of sodium using the molecular dy- ",, namics technique whereby t...
The thermodynamic properties for the saturated and superheated phases of sodium are presented in tab...
A model for the temperature dependence of the isobaric heat capacity of associated pure liquids C-p,...
A five-term Houston's formula is used to calculate the vibrational spectrum of sodium on the basis o...
A convergent series representation for the internal partition function of polyelectronic atoms is ob...
Using an improved ice calorimeter and furnace, the enthalpy changes of two samples of pure sodium ha...
In an earlier simple “group contribution” method, molar volumes of organic and inorganic materials w...
The vibrational properties of atomic clusters are a fingerprint of their structures and can be used ...