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Conservation of Current
End of Proof
Conservation of Generalized Currents
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amplitude angular assume assumption behavior calculate called charge collisions comes commutator complete constant contribution correct coupling course cross section defined depends described determined difference direction discuss distribution effect electron energy equal equation example exchange expect experiment experimental expression fact fall field final finite given gives hadrons hence idea integral interaction involved isospin known later Lecture light cone limit look mass matrix elements mean measured meson momentum nearly negative Note nucleon operator particles partons physical pion polarization pole positive possible probability problem proton quantum quantum numbers quark quark model region relation resonances result scaling scattering seen simple singularity space spin strong suggested suppose term theoretical theory vary vector virtual wave function write zero