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DETECTION METHODS FOR NUCLEAR RADIATIONS
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absorption accelerators alpha particles amplitude angle angular momentum antineutrino approximately assume atomic average baryon beam beta decay calculated chamber Chap charge coefficient collision component conservation consider corresponding Coulomb counter curve decay constant density deuteron dipole direction eigenfunction elastic electric electromagnetic electron emission emitted energy loss equation excited experimental factor Fermi Figure fission formula gamma rays given gives hence high energy hydrogen intrinsic parity ionization ions isotopes kinetic energy leptons levels magnetic field mass matrix element measured meson momenta muon neutrino neutron Nucl nucleons nucleus observed obtained orbit pair parity Phys physics pions polarized positron potential produced proton quadrupole quantum numbers quarks radiation radioactive radius ratio reaction relation resonance result rotational selection rules shell model shows spectrum spin strong interactions target theory thermal tion transition vector velocity wave function weak interaction