## Weak Interactions: A Series of Lectures Given at the University of Rochester During the Summer 1958 |

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angular correlations antineutrino antiparticles asymmetry parameter axial vector current axial vector interaction baryons branching ratio charge conjugation chiral currents chiral fields chiral projection conservation consider consistent corresponding coupling constants discussion effective coupling constant electric charge electromagnetic electron mode elementary particles emission asymmetry emitted energy equation of motion expression F and GT Fermi Feynman field operator four-fermion four-momentum functions further given hyperon hypothesis independent inter invariants and pseudoinvariants isotopic vector Lagrangian lepton lifetime longitudinal polarization lowest order perturbation magnetic magnitude meson momentum dependent multipole muon decay negative chiral neutral particle neutrino field neutron nuclear nucleon obtained order perturbation theory pairs Phys pion positive chiral possible projection operators properties proton quantum number rest frame restriction scalar selection rules spin spinor strong interactions transition matrix transition matrix element type of interaction V-A interaction V-A theory vector current weak decays weak interactions