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?This paper presents, shortly, some new andoriginal relations to calculate the Compton Effect exactly. Anarrow fascicle of X-Ray beams, with a wave length knows Landa0, downs on agraphitic bloc, which scatters the incidental radiations in all directions. Witha Roentgen spectrometer, for different scatter angles FI, Compton has found a new radiation with ahigher wave length Landa. The Compton Effect can’t be explained with thewave-theory. Compton has explained this increase of thewave length by the interaction between an incidental photon and an electron. Gamma0is the frequency of incidental photon; Gamma is the frequency of the scatterphoton with the FI angle; m is the mass of the accelerated electron. Inthis paper one proposes the exchanging of classical Compton relation, (3’) with the new relation(11). Conclusions: ????????? For an incidental radiation which has a wave lengthsmaller than Landa=10**(-11) [m] {Gamma>3*10**(19) [Hz]}, the influence ofthe new presented relation (11) become really and necessary. ????????? X-Rayradiations with high frequency and gamma radiations, shall be treated with thenew relation (11). ????????? Alternatecurrents, Radio frequency, Microwaves, Infrared, Visible domain, Ultravioletdomain, and the first half of X-ray domain, work with the classical Compton relation (3’). ????????? For a wavelength higher than Landa=10**(-11) [m] the new relation (11) works like theclassical Comptonrelation. When the wave length become smaller than Landa=10**(-11) [m], the newrelation (11) presented in this paper works different and its utilizationbecome necessary. Observations: The relations (11) and (3’) have been deducedwith the Delta E Einstein Energy, because the particle (the electron) speedsfrom 0 to v, and increase its mass too from m0 to m, but these relations can beobtained with classical Kinematical Energy as well. A precision determinationimposes a sum energy between the Delta Einstein Energy and the bound Energy.? Keywords: Compton Effect, X-ray, beam, beams, wave length, graphitic bloc, scatter,incidental radiations, Roentgen spectrometer, different scatter angles,radiation with a higher wave length, the wave theory, interaction between anincidental photon and an atomic electron, wave, period, frequency, Quantum, spectral lines, velocity, light velocity, frequency. ? ? ? |
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