## An empirical formula of the coherent scattering cross section of gamma rays |

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0.662 MeV photons 1.33 MeV photons A. M. Ghose accurate theoretical data agreement Annual subscription atomic number Bernstein and Mann Birmingham group Bose Institute Brown and Mayers Bureau of Standards calculated after Brown Clearinghouse coherent scat coherent scattering cross Comparison cross section data data for Pb Delbruck scattering empirical formula error limits estimate experimental data form factor formalism form factor results fr(q function of q Gamma Rays given by Equation hard noncoherent component high Z elements large number least squares literature Mathematical method of least modified form factor mula Nath and A. M. National Bureau Nelms and Oppenheim nuclear Thomson scattering number of experimental O.lmc physical measurement polarization present formula range of momentum Rayleigh scattering cross refined formalism results of Nelms scattering and Delbruck scattering cross section scattering process smooth curve tering intensity total coherent scattering transfer q trend value of n(q values given values of q y-ray energies