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Early training as a physicist; quartz-fibre electrometer; high-voltage installations, above 200 kilovolts; high-voltage accelerator, especially Van de Graaff machines; cloud chamber; fission 1939; reminiscences of Niels Bohr; leaving Europe 1939; war work at National Bureau of Standards 1940; rocket work 1940’s; post-war rehabilitation of laboratory facilities; technological improvements after the war; learning nuclear physics after the war; nuclear spin; development of shell model; rotational model 1952; gamma-ray detection; changes in research styles; research plans for the present (1967)
Engineering physics at Lehigh University, 1926-1930; graduate work in physics at University of Wisconsin, 1930-1934; Ann Arbor summer school, 1934; reputation and major interests of theoretical group at University of California at Berkeley, mid-1930s; nuclear force studies; migrations of Berkeley theorists to Caltech; major discoveries during 1930s, their communication through journals; interactions between Berkeley experimentalists and theorists in 1930s; influence of cosmic ray and astrophysics research on nuclear physics; beta decay; betatrons and synchotrons, pre- and postwar; significa