MASS DEFICIENCY CORRECTION TO THE RELATIVISTIC QUANTUM MECHANICAL APPROACH: METRIC CHANGE NEARBY THE NUCLEUS
Makaleler, UMA
MASS DEFICIENCY CORRECTION
TO THE RELATIVISTIC QUANTUM MECHANICAL APPROACH:
METRIC CHANGE NEARBY THE NUCLEUS
Tolga Yarman
Işık University, Feyziye Schools Foundation
Maslak, İstanbul, Turkey
ABSTRACT
The mass of an electron bound to a nucleus, due to the “equivalence of mass and energy”, based on the special theory of relativity, should decrease, as much as the binding energy this electron delineates. This, so far, seems to have been overlooked. The magnitude of the bound electron’s mass decrease, is an effect about twice the magnitude of the Dirac’s relativistic effect. Furthermore, it is in the opposite direction, which makes that the energy levels, contrary to what Dirac had predicted, should be (as compared to Bohr’s, as well as Sommerfeld’s energy levels) shifted (not downward, but), upward.
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