Beta decaySee also what's at Wikipedia, your library, or elsewhere.
Broader terms:Narrower terms:Used for:- Beta disintegration
- Beta rays -- Decay
- Decay, Beta
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Filed under: Beta decay Some aspects of the beta to alpha transformation in uranium : metallographic structure and orientation relationships (Argonne National Laboratory, 1959), by H. H. Chiswik and L. T. Lloyd (page images at HathiTrust) An investigation of the beta-ray spectrum of 93-neptunium-239 (Atomic Energy Commission, 1947), by Harry W. Fulbright, U.S. Atomic Energy Commission, and Washington University (page images at HathiTrust) L-converted isometric transition (Atomic Energy Commission, 1947), by M. Goldhaber, S. J. Turkel, C. O. Muehlhause, and U.S. Atomic Energy Commission (page images at HathiTrust) The average gamma energy emitted per beta particle for several radioactive isotopes (Atomic Energy Commission, 1947), by E. C. Barker and U.S. Atomic Energy Commission (page images at HathiTrust) The beta-decay asymmetry and nuclear magnetic moment of neon-19 (University of California Radiation Laboratory, 1963), by David Albert Dobson and Lawrence Radiation Laboratory (page images at HathiTrust) Beta decay energy of Ac²²⁶ (University of California Radiation Laboratory, 1950), by K. L. Hall, D. H. Templeton, and Lawrence Radiation Laboratory (page images at HathiTrust) Biological monitoring of the laboratory area by analyses of rodents and other forms of wildlife. (U.S. Atomic Energy Commission. Technical Information Service, 1947), by K. E. Herde, Hanford Engineer Works, and U.S. Atomic Energy Commission (page images at HathiTrust) Branching ratio in beryllium decay. ([Lawrence] Radiation Laboratory, 1949), by C. M. Turner and Lawrence Radiation Laboratory (page images at HathiTrust) NASA TN D-5946 (National Aeronautics and Space Administration :, 1970), by Jag J. Singh, Langley Research Center, and United States National Aeronautics and Space Administration (page images at HathiTrust; US access only) Excited states of xenon-130 populated by beta decay (National Aeronautics and Space Administration ;, 1969), by Theodore E. Fessler, S. Jha, Glenn M. Julian, United States National Aeronautics and Space Administration, and Lewis Research Center (page images at HathiTrust) Excited states of cerium-138 and praseodymium-138 populated by beta decay (National Aeronautics and Space Administration ;, 1971), by Glenn M. Julian, Theodore E. Fessler, and Lewis Research Center (page images at HathiTrust) Branching ratio in Be⁷ decay (U.S. Atomic Energy Commission, Technical Information Division, 1949), by C. M. Turner, University of California Radiation Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Branching ratio in beryllium decay. ([Lawrence] Radiation Laboratory, 1949), by C. M. Turner, Lawrence Radiation Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Angular correlation in allowed [beta] transitions (Oak Ridge National Laboratory, 1953), by M. E. Rose, U.S. Atomic Energy Commission, and Oak Ridge National Laboratory (page images at HathiTrust) Interaction effects in [beta]-decay (Oak Ridge National Laboratory, 1953), by M. E. Rose, U.S. Atomic Energy Commission, and Oak Ridge National Laboratory (page images at HathiTrust) The Beta-decay interation and the analysis of recoil experiments (Oak Ridge National Laboratory, 1953), by M. E. Rose, U.S. Atomic Energy Commission, and Oak Ridge National Laboratory (page images at HathiTrust) Beta decays and delayed gammas from fission fragments (Los Alamos Scientific Laboratory of the University of California, 1963), by James Griffin, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Other details of post-fission beta decay (Los Alamos Scientific Laboratory of the University of California, 1964), by James J. Griffin, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Re-evaluation of optimal parameters for post-fission beta decay (Los Alamos Scientific Laboratory of the University of California, 1964), by James J. Griffin, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutron reduced groups by least squares (Los Alamos Scientific Laboratory of the University of California, 1964), by Thomas E. Springer, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Physics Division. (Oak Ridge National Laboratory, 1951), by M. E. Rose, David K. Holmes, Oak Ridge National Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Calculation of the bremsstrahlung from Li-8 electrons (United States Atomic Energy Commission, Technical Information Service, 1953), by L. H. Weinberg, H. E. Stone, Knolls Atomic Power Laboratory, General Electric Company, and U.S. Atomic Energy Commission (page images at HathiTrust) Calculation of the bremsstrahlung from Li-8 electrons (Knolls Atomic Power Laboratory, 1953), by L. H. Weinberg, H. E. Stone, and U.S. Atomic Energy Commission (page images at HathiTrust) Double beta-decay. (Carneie Institute of Technology, 1951), by Rolf G. Winter and U.S. Atomic Energy Commission (page images at HathiTrust) On the neutrinos emitted in [beta]-decay and [mu]-capture (Midwestern Universities Research Association ;, 1960), by S. P. Rosen, U.S. Atomic Energy Commission, and Midwestern Universities Research Association (page images at HathiTrust) Spallation yields from chlorine with 45-430 Mev protons : a search for unknown medium-light even-even nuclides; and beta lifetime statistics (Oak Ridge, Tennessee : United States Atomic Energy Commission, Technical Information Service, 1956., 1956), by John W. Jones, U.S. Atomic Energy Commission. New York Operations Office, and Carnegie Institute of Technology (page images at HathiTrust) An experimental study of beta decay using the radiations from oriented nuclei (U.S. Dept. of Commerce, National Bureau of Standards :, 1961), by Dale D. Hoppes and United States. National Bureau of Standards (page images at HathiTrust) The nuclear structure of tellurium 133 via beta decay and shell model calculations in the doubly magic tin 132 region (Dept. of Energy, Lawrence Livermore Laboratory ;, 1979), by Stephen Mark Lane and Lawrence Livermore Laboratory (page images at HathiTrust) Nucleon isobars as intermediate states in beta-decay (Oak Ridge, Tennessee : U.S. Atomic Energy Commission, Technical Information Service, 1953., 1953), by Ya. B. Zeldovich, U.S. Atomic Energy Commission, and National Science Foundation (U.S.) (page images at HathiTrust) Production of Pu246 in the MTR (Argonne National Laboratory, Chemistry Division, 1954), by Herbert Diamond, Raymond F. Barnes, U.S. Atomic Energy Commission, and Argonne National Laboratory (page images at HathiTrust) Inverse [beta] process (Oak Ridge, Tennessee : United States Atomic Energy Commission, Technical Information Service, 1946., 1946), by B. Pontekorvo, U.S. Atomic Energy Commission, and Chalk River Nuclear Laboratories (page images at HathiTrust) Preparation of microspherical alpha-radiation sources (Miamisburg, Ohio : Mound Laboratory, 1976., 1976), by Layton J. Wittenberg, Monsanto Chemical Company, Mound Laboratory, and United States. Energy Research and Development Administration (page images at HathiTrust) Energy dependence of the asymmetry in the beta decay of polarized muons (Irvington-on-Hudson, New York : NEVIS Cyclotron Laboratories, Columbia University, Physics Department, 1957., 1957), by D. Berley, M. Weinrich, Leon M. Lederman, R. L. Garwin, T. Coffin, U.S. Atomic Energy Commission, United States. Office of Naval Research, and Nevis Laboratories (page images at HathiTrust) The ©�-decay of the pion (Irvington-on-Hudson, New York : NEVIS Cyclotron Laboratories, Columbia University, Physics Department, 1958., 1958), by G. Impeduglia, J. Steinberger, M. Schwartz, N. Samios, R. Plano, U.S. Atomic Energy Commission, United States. Office of Naval Research, and Nevis Laboratories (page images at HathiTrust) Momentum and asymmetry spectrum of MU decay (Irvington-on-Hudson, New York : NEVIS Cyclotron Laboratories, Columbia University, Physics Department, 1960., 1960), by Richard J. Plano, U.S. Atomic Energy Commission, United States. Office of Naval Research, and Nevis Laboratories (page images at HathiTrust)
Filed under: Beta decay -- Isotopes Technical background information for the environmental and safety report, vol. 4 : White Oak Lake and Dam (Oak Ridge, Tennessee : Oak Ridge National Laboratory, 1982., 1982), by T. W. Oakes, Frank Steven Tsakeres, K. E. Shank, J. C. Bird, J. S. Eldridge, W. F. Ohnesorge, B. A. Kelly, Oak Ridge National Laboratory, and United States. Department of Energy (page images at HathiTrust) Preparation and characterization of cesium-137 aluminosilicate pellets for radioactive source applications (Oak Ridge, Tennessee : Oak Ridge National Laboratory, 1981., 1981), by F. J. Schultz, K. W. Haff, J. A. Tompkins, F. N. Case, Oak Ridge National Laboratory, and United States. Department of Energy (page images at HathiTrust)
Filed under: Beta decay -- Mathematical modelsFiled under: Delayed neutrons Theory of the criticality of the water boiler and the determination of the number of delayed neutrons (Atomic Energy Commission, 1944), by F. de Hoffman and U.S. Atomic Energy Commission (page images at HathiTrust) The determination of the ranges of the fission fragments emitting delayed neutrons chemical identification of the 4.51s delayed neutron activity (Atomic Energy Commission, 1946), by N. Sugarman and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutrons from PU²³⁹ (Atomic Energy Commission, 1946), by B. T. Feld, F. de Hoffmann, and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutrons from Pu²³⁹ (Atomic Energy Commission, 1946), by R. R. Wilson, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) An investigation of the delayed neutron decay curves resulting from uranium and plutonium fission (Atomic Energy Commission, 1944), by C. Redman, D. Saxon, and U.S. Atomic Energy Commission. Technical Information Division (page images at HathiTrust) Nuclear decay studies of protactinium isotopes (University of California Radiation Laboratory, 1958), by Max Wilmer Hill and Lawrence Radiation Laboratory (page images at HathiTrust) Energies of the delayed neutrons from U²³⁵ fission products (Technical Information Division, Atomic Energy Commission, 1946), by E. O. Wollan, H. B. Willard, L. A. Pardue, M. Burgy, and U.S. Atomic Energy Commission (page images at HathiTrust) Chemical isolation of 56 second bromine and the 23 second iodine delayed neutron activities (Technical Information Branch, Atomic Energy Commission, 1946), by A. H. Snell, M. B. Sampson, E. P. Meiners, J. S. Lovinger, and U.S. Atomic Energy Commission (page images at HathiTrust) Nitrogen¹⁷, a delayed neutron emitter. ([Lawrence] Radiation Laboratory, 1948), by Luis W. Alvarez and Lawrence Radiation Laboratory (page images at HathiTrust) Relative effectiveness of delayed neutrons in the waterboiler (U.S. Atomic Energy Commission, Technical Information Service, 1951), by F. de Hoffmann, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Criticality of the water boiler and effective number of delayed neutrons (U.S. Atomic Energy Commission, Technical Information Service, 1951), by F. de Hoffmann, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Stopping of fission fragments (U.S. Atomic Energy Commission, Technical Information Division, 1948), by W. M. Good, W. A. Strauser, Ernest Omar Wollan, Oak Ridge National Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutrons from U²³⁵ after short irradiation (U.S. Atomic Energy Commission, Technical Information Branch, 1949), by P. R. Stein, Otto Robert Frisch, Bernard T. Feld, F. De Hoffman, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) The energy spectrum of the delayed neutrons from O¹⁷ (U.S. Atomic Energy Commission, Technical Information Branch, 1949), by Evans Hayward, University of California Radiation Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Theory of low power kinetics of circulating fuel reactors with several groups of delayed neutrons (Brookhaven National Laboratory, 1955), by J. A. Fleck, U.S. Atomic Energy Commission, and Brookhaven National Laboratory (page images at HathiTrust) The combined effect of delayed neutrons and temperature on reactor kinetics (Brookhaven National Laboratory, 1954), by R. S. Margulies, U.S. Atomic Energy Commission, and Brookhaven National Laboratory (page images at HathiTrust) Delayed neutrons : a review as of October 1955 (United States Atomic Energy Commission, Technical Information Service Extension ;, 1955), by G. Robert Keepin, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutrons from fissionable isotopes of uranium, plutonium, and thorium (Los Alamos Scientific Laboratory of the University of California, 1957), by G. Robert Keepin, R. K. Zeigler, T. F. Wimett, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Delayed neutron reduced groups by least squares (Los Alamos Scientific Laboratory of the University of California, 1964), by Thomas E. Springer, Los Alamos Scientific Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Chemical Technology Dvision [and] Analytical Chemistry Division. (Oak Ridge National Laboratory, 1968), by J. W. Landry, G. A. West, W. J. Ross, J. E. Strain, Oak Ridge National Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Li⁹ : new delayed neutron emitter ([Lawrence] Radiation Laboratory, 1951), by W. L. Gardner, B. J. Moyer, N. Knable, Lawrence Radiation Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) The determination of the ranges of the fission fragments emitting delayed neutrons chemical identification of the 4.51s delayed neutron activity : errata (Atomic Energy Commission, 1946), by N. Sugarman and U.S. Atomic Energy Commission (page images at HathiTrust) Reduced delayed neutron group representations (Atomics International, 1959), by R. E. Skinner, E. R. Cohen, North American Aviation. Atomics International Division, and U.S. Atomic Energy Commission (page images at HathiTrust) Instability studies with EBR-I, Mark III (Argonne, Illinois : Argonne National Laboratory, Idaho Division, 1960., 1960), by R. R. Smith, U.S. Atomic Energy Commission, and Argonne National Laboratory (page images at HathiTrust)
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