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DERIVATION OP THE DISPERSION RELATIONS
EVALUATION AND COMPARISON OF 33 DISPERSION RELATIONS
EXAMINATION OF EXPERIMENTAL SCATTERING PHASE SHIFTS
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Analysed by H. L. analysis Anderson and W. C. Barycentric angular distribution Born term calculated with set center of mass CGLN coefficients contribution coupling constant curve is calculated dash-dot dependence upon phase differential cross section dispersion integrals effect energy dependence Equation error matrix evaluated expansion experimental data experimental points Figure 15 Figure 17 form factors Gaussian quadrature H. L. Anderson HBhler high energies ILLIAC isospin J. D. Jackson Legendre polynomials low energies magnetic dipole meson Mev photon laboratory Mukhin multi-pion nucleon Nuovo Cimento one-dimensional dispersion relations p-wave partial wave dispersion percent photon laboratory energy photoproduction cross sections Phys pion photoproduction pion-nucleon scattering polynomial fit Quareni relativistic rescattering resonance scattering amplitudes scattering dispersion relations scattering experiments scattering phase shifts shifts and Q shown in Figure solid curve three parameter fit total cross section total isotopic spin unitarity W. C. Davidon wave dispersion relations wave phase shifts