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Introduction and Summary of the Position
Investigation of Some Of the Deeper Impli
LECTURE k The Notion of Intrinsic Parity and the Quan
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analogous antineutrino antiparticle atom bosons calculate charged particle classical coefficients commutes conservation laws conservation of total consider coordinates corresponding Coulomb coupling constant destruction operators determine Dirac electric charge electromagnetic interactions elementary particle elementary particle parameter elementary particle species emit equation evolution operator example experiment fact fermions Feynman diagram gamma rays gauge invariance Hamiltonian hyperons indirect method intrinsic parity involved isotopic spin lepton lifetime linear momentum magnetic field mathematical meson momenta motion muon neutrino neutron nucleons nucleus number of particles opposite orbital angular momentum parity conservation physical pion polarization positron potential energy principle produced proton protons and neutrons quantities quantized field amplitude quantum mechanics quantum numbers reaction relative rotation single particle space inversion spontaneous decay strange particles strong interactions theorem theory third component total angular momentum total baryon number total isotopic spin total parity transition probability TT mesons vector wave function weak interactions zero