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Engineering Physics Annotation << Back
ELECTRODYNAMICS OF NON-POINT PARTICLES AND ELECTRON ENERGY |
A.I. LAPTUKHOV
It is shown that both the size of the proton and the size of the electron is characterized by the Compton wavelength of the particle. A method for constructing the electrodynamics of non-point particles with a fi nite energy value of their electromagnetic field is proposed. In the approximation of point particles, the equilibrium state of an electron and a proton in a hydrogen atom is possible only dynamic. But taking into account the finite particle sizes, the possibility of the existence of static equilibrium is also shown, when an almost point proton p is at rest in the central region of the electron e, whose volume is billions of times larger than the volume of the proton. In this case, a new, unknown to science particle - quasineutron (ep) is formed, the size of which ~e=h/(mec)=2.410-12 m close to the size of an electron. The binding energy of the system (ep) (it is not a neutron or hydrogen) ~mec2/137=3.73 kev is much higher than the chemical one and much lower than the nuclear one. The formation of such particles is a source of excess energy release observed by various authors in different countries of the world in many low-energy processes involving hydrogen.
Key words: electrodynamics, non-point particles, electron energy, quasineutron, unusual atoms.
DOI: 10.25791/infizik.06.2019.669
Contacts: E-mail: a.laptukhov@mail.ru
Pp. 34-41. |
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