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In this paper, by solving the equations of the relativistic M2 [2] it will show that elementary particles, such as electrons, can contain the wave process with very specific properties. The wave model of a stationary electron is represented in the form of a spherical wave process.
При изучении атома водорода, с целью выявления всех тонкостей поведения электрона, одним из главных условий является применение правильных, адекватных уравнений. До последнего времени, для этого применялись уравнения Шредингера, Клейна-Гордона и Дирака. Уравнение Шредингера анализировать не будем, так как оно не релятивистское и поэтому не может пр...
In this paper, by solving the relativistic equation M2, the wave nature of the electron is revealed. The validity of the initial hypothesis of Louis de Broglie about the existence of matter waves is proved. The connection between the wave characteristics of an electron and the Compton wavelength is revealed. The problem of dispersion and spreading...
There are many publications out there dealing with the problem of magnetic interaction between elementary particles with intrinsic dipole moments. Basically, the magnetic interaction becomes significant at sufficiently small distances; therefore, the problem is complicated by the need to take into account relativistic effects. The derived equations...
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Project (1)
The aim of the project is to attract qualified specialists for experimental verification of theoretical results.