Authors: Lubomir Vlcek
In the article we prove that: 1.Form of Intensity of the Moving Charge Electric Field is asymmetrical, 2. Form of the interference field is non-linear, 3. Kinetic energy of a charge moving at the velocity of v has two different values: Kinetic energy against direction of motion as wave Tkin ad = mc2[ln |1+v/c|- (v/c)/(1+v/c)] Kinetic energy in direction of motion as particle Tkin id = mc2[ln |1-v/c|+ (v/c)/(1-v/c)] An electron moving at a speed ve= 0,003c creates spectral line Hα. Accurate electron speeds are given in the table in this article. Confirmation of Doppler´s principle in hydrogen for Balmer line Hα. Accompanying activity of reaction on movement of stable particles in the transmission medium are waves. One blink of electron is the basis amount of kinetic energy 6.62606957x10-34 Js. Stable electrons moving with speeds (0,99 c – c ) creates leptons (μ−, τ−), neutrinos (νe, νμ, ντ) and bosons W +, W-, Z (= β electrons). Weak interactions are caused with stable electrons, which creates leptons (μ−, τ−) = ( particles = electrons different speeds), neutrinos νe, νμ, ντ (= waves) , bosons W +, W-, Z (= particles = β electrons moving at nearly the speed of light ) and gamma rays (=waves of extremely high frequency >1019 Hz ). Stable particles (p +, n0, D, He-3, α) moving with speeds ( 0,3 c – 0,99 c ) creates baryons and mesons. The strong interactions are caused with stable particles (p +, n0, D, He-3, α ), which creates baryons and mesons.
Comments: 40 Pages. Electromagnetic waves are emited in individual blinks (flickers) and the kinetic energy against direction of motion as wave in transmission medium (as the energy of the electromagnetic field ) of a single electron during 1 seconde is proportional f
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[v1] 2015-04-10 05:16:10
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