Research
Dirac Generalized Relativistic Quantum Wave Function which Gives Right Electrons Number in Each Energy Level by Controlling Quantized Atomic Radius
Using generalized special relativistic energy-momentum relation the linear energy-momentum Dirac relation was obtained. This equation was used to find Dirac generalized relativistic quantum equation. This equation was used to find the probability and the number of particles for each atomic energy level. The wave function found using this equation can give an expression for the number of electrons in each energy levels if the atomic radius is quantized and satisfy a certain relation.
Derivation of Neel Temperature and Pressure Expressions for High Temperature Superconductors
Using plasma equations beside Maxwell statistical distribution law a useful expression of the Neel temperature similar to that obtained for high temperature superconductors was derived. This expression was found by obtaining a new expression of energy from the plasma equation. The same procedures were used to find an expression of the pressure and isotope mass in terms of the critical temperature for high temperature superconductors. These expressions resembles the conventional ones.
