![]() |
customer@davidpublishing.com |
![]() |
3275638434 |
![]() |
![]() |
| Paper Publishing WeChat |
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License
Relationship Between Classical and Quantum Physics
Skender Ahmetaj, Skender Kabashi, Gazmend Kabashi, Valon Veliu
Full-Text PDF
XML 287 Views
DOI:10.17265/2159-5291/2013.02.004
Department of Physics, Faculty of Sciences, University of Prishtina, Theresa nr 4, Prishtina 10000 Kosovo.
Schrödinger’s equation is one the equations that mark the beginnings of the systematic quantum physics. It was shown that it follows from the Dirac’s equation and the relationship with classical physics, i.e. with classical field theory was established. The subject of this work is the relationship between classical relativistic physics and the quantum physics. Investigation carried out in this work, shows that the free electromagnetic field, spinor Dirac’s field without mass, spinor Dirac’s field with mass, and some other fields are described by the same vibrational formulation. The conditions that a field be described by Maxwell’s equations of motion are given in this work, and some solutions of these conditions are also given. Non-relativistic approximation of the equations of the non-quantified field are the Schrödinger’s equations. Dirac’s equation as a special case, contains Maxwell’s equations and the Schrödinger’s equation.
Relationship, quantum physics, classical physics.




