A model potential depending on an effective core radius but otherwise parameter free is used for the comparative study of electrical resistivity of simple and non-simple liquid metals. In the present paper electrical resistivity of simple and non-simple liquid metals have been calculated using Ziman's formula, Ziman's formula modified and used by Khajil and Tomak (Self consistent approximation) and t-matrix formulation given by Evans and Evans et al. Previously no one have reported such comparative study using pseudopotentials. In the electrical resistivity calculations we have used structure factor derived through charge hard sphere approximation. The beauty of this approximation is that it needs pseudopotential form factor for the calcula...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
199-202The electrical resistivity of liquid. alkali metals has been discussed on the basis of Zima...
The form factors of pseudopotential that works for all elements is fully developed. The plane wave ...
A model potential depending on an effective core radius but otherwise parameter free is used for the...
A model potential depending on an effective core radius but otherwise parameter free is used for the...
The electrical resistivity of liquid Al−Mg and Al−Cu alloys is calculated using both the Faber-Ziman...
In the present paper, we have used Ziman’s approach and transition matrix (t-matrix) approach to stu...
In the present paper, we have used Ziman’s approach and transition matrix (t-matrix) approach to stu...
The resistivity of liquid Li-Sn and Na-Pb alloys is calculated using the theory of ‘‘2 k F ’’ scatte...
An elementary theory of the electrical resisitivity of monovalent liquid metals is given. On using t...
The electrical resistivity of K, Rb and Cs in the liquid state was derived within the framework of t...
There are two main methods to calculate the temperature dependence of electrical resistivity. The fi...
A method is described which permits direct measurement of the electrical resistivity, ρ, of liquid m...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
199-202The electrical resistivity of liquid. alkali metals has been discussed on the basis of Zima...
The form factors of pseudopotential that works for all elements is fully developed. The plane wave ...
A model potential depending on an effective core radius but otherwise parameter free is used for the...
A model potential depending on an effective core radius but otherwise parameter free is used for the...
The electrical resistivity of liquid Al−Mg and Al−Cu alloys is calculated using both the Faber-Ziman...
In the present paper, we have used Ziman’s approach and transition matrix (t-matrix) approach to stu...
In the present paper, we have used Ziman’s approach and transition matrix (t-matrix) approach to stu...
The resistivity of liquid Li-Sn and Na-Pb alloys is calculated using the theory of ‘‘2 k F ’’ scatte...
An elementary theory of the electrical resisitivity of monovalent liquid metals is given. On using t...
The electrical resistivity of K, Rb and Cs in the liquid state was derived within the framework of t...
There are two main methods to calculate the temperature dependence of electrical resistivity. The fi...
A method is described which permits direct measurement of the electrical resistivity, ρ, of liquid m...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
The electrical resistivities of metals and alloys tend to saturate at some value in the range 150–25...
199-202The electrical resistivity of liquid. alkali metals has been discussed on the basis of Zima...
The form factors of pseudopotential that works for all elements is fully developed. The plane wave ...