On the Theories of the Rest-mass Spectrum of the Elementary Particles |
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Appendix arbitrary argument becomes Born boundary condition calculation chapter character charged classical confirmed connected consider correspondence Darling Darling's Darling's theory decay scheme described Dirac's equation discussed eigenfunction eigenvalue electron elementary particles energy existence experiment experimental field formulation function fundamental given gives hand heavier particles identical infinite integral interaction introducing irreducible volume kind known length light cone Lorentz invariance mass Mathematical mean meson Nature neutral noted obtain operator ordinary original particular Phys physical polar polynomial positive and negative possible present present experimental Press principle problem Proc propagation characteristics properties proposed quantity quantum quantum mechanical reciprocally invariant reciprocity Reciprocity Operator region regular relation relativistic represented require rest-mass result root satisfy similar solution space spectrum spin Q theoretical theory unique UNIVERSITY variables wave function written zero