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Penetration Phenomena Depending on Nuclear
Atomic Excitation and lonization in Penetration
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a-particles a-rays according adiabatic applied approximately atomic electrons BOHR bound electrons calculation capture and loss charge and velocity charge number classical mechanics collisions and resonance compared with v0 compound scattering consider considerations corresponding Coulomb Coulomb field curve deflection angle depend differential cross-section diffraction discussed distance distant collisions electron capture electronic collisions energy transfer essentially estimate expression fact fast particles fission fragments follows free collisions Gaussian given gives heavier substances heavy high speed particles hydrogen impact parameter incident particle initial velocity ionization potential large compared larger lisions logarithmic term nuclear collisions nuclei number of collisions obtained orbital pictures orbital velocities order of magnitude penetration phenomena phenomenon Phys problem quantum quantum-mechanical range straggling range velocity relation regards relative resonance effects result Rutherford law Rutherford scattering simple small compared smaller square deviation statistical distribution stopping formula stopping materials stopping power theory treatment two-body problem wave