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Measurement of HalfLife of Simple Radioactive Decay
Specific Ionization Due to Alpha Particles in
Absorption of Beta Particles
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absorber thickness alpha particles aluminum background beta particles block bombarded boron boron absorber Bragg cadmium Calculate calibrated capture chemical circuit cobalt column counter tube counting rate counts per minute crystal decay constant delayed neutrons density determined diffraction distance distribution dose rate electrons electroscope elements emission emitted equation equilibrium experiment experimental extrapolated range fast neutrons fiber fission gamma radiation gamma rays Geiger given graphite Graphite Reactor half-life indium indium foils instrument intensity interval ionization chamber irradiated laboratory maximum measured metal METHOD minutes mr/hr negative neutron beam neutron flux neutron source Nuclear number of counts number of neutrons Oak Ridge observed obtained ORNL photon pile planes plot pneumatic tube position PROCEDURE produced pulse radioactive atoms radium radium source reactions readings record resin sample saturated activity scale-of-two scattering cross section semi-log solution specific ionization temperature THEORY thermal neutron uranium voltage volume wire zero