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Energy series

G. T. Seaborg,. J. Katz, and W. M. Manning eds.. The Transuranium Elements Research Papers, National Nuclear Energy Series, Div. IV, 14B, McGraw-Hill Book Co., Inc., New York, 1949. [Pg.227]

The Potentialfor Renewable Energy Nn Interlaboratoy White Paper, Office of PoHcy Planning and Analysis, U.S. Dept, of Energy, SERI/TP-260-3674, Washington, D.C., 1990, p. C-2. [Pg.274]

J. C. Wamei, Metallurgy of Uranium, Oak Ridge, Teimessee, Natuial Nuclear Energy Series, Div. IV, U.S. AFC Technical Information Service, 1953. [Pg.337]

H. W. Savage, Separation of Isotopes in Calutron Units, Oak Ridge, Teimessee, National Nuclear Energy Series Div. 1, Vol. 7, TlD-5233, U.S. AEG Technical Information Service, 1951. [Pg.337]

K. P. Cohen, Fhe Fheory of Isotope Separation as Applied to the Earge-Scale Production ofC-235, National Nuclear Energy Series Division III, Vol. IB, McGraw-HiU Book Co., New York, 1951. [Pg.102]

Jaffey AH, Flynn KF, GlendeninLE, Bentley WC, Essling AM (1971) Precision measurement of half-lives and specific acitivities of U and U. Phys Rev C4 1889 Kohman TP, Ames DP, Sedlet J (1949) The transuranium elements. National Nuclear Energy Series IV(14B) 1675... [Pg.20]

Analytical Chemistry of the Manhattan Project. National Nuclear Energy Series Div. VIII, Vol. 1. NewYork McGraw Hill 1950. [Pg.131]

National Nuclear Energy Series Div. IV, Vol. 14 B. New York McGraw Hill 1949-... [Pg.136]

Quaak, R, H. Knoef, and H. Stassen, 1999. Energy from Biomass. A Review of Combustion and Gasification Technologies. World Bank Technical Paper No. 422, Energy Series, The World Bank, Washington D.C. 78 pp. [Pg.122]

The computation of the density of states within the LCT is nontrivial since the LCT free energy F T) = —(31nZ(7 ) is derived as an expansion in the product of the van der Waals interaction energies e and (3 = l/k T. This free energy series for semiflexible polymer systems has been developed [50, 51] through second order in p,... [Pg.143]

Compounds, National Nuclear Energy Series, 1st ed., Division VI, Vol. 1, Book 1, p. 456, McGraw-Hill, New York, 1949. [Pg.165]

We can find the potential at which a free electron appears by measuring the threshold of external photoemission E h. However, the ionization is not always accompanied by electron emission. We can consider the ionization event to have occurred if the electron is transferred to the conductivity band. The corresponding ionization potential 7C equals the energy needed to transfer an electron to the bottom of the conductivity band. It is found experimentally by measuring the threshold of photoconduction current. In crystalline insulators /c can be found from the limit to which the energy series for the Wannier-Mott179 exciton converges. [Pg.310]

Source From Rigg T., Wild, W., Radiation Effect in Solvent Extraction Processes. Progress in Nuclear Energy Series III, Pergamon Press London, Vol. 2, 7-6, 320-331. 1958. [Pg.445]

Burger, L.L. 1958. The decomposition reactions of tributyl phsophate and its diluents and their effect on uranium recovery processes. Progress in Nuclear Energy Series HI Pergamon Press London, Process Chemistry, Vol. 2, 7-5, 307-319. [Pg.499]

DEBIE series, see (/-Electron band ionization energy series Deboronating agents, for icosahedral carbaboranes, 3, 67 Decacarbonyldichromate ion, experimentally determined structure, 5, 204... [Pg.92]

Dehydropolymerization, for polysilane high polymers, 3, 562 (/-Electron band ionization energy series, and photoelectron spectroscopy, 1, 397... [Pg.92]

Strain, J. E. Use of Neutron Generators in Activation Analysis. Progress in Nuclear Energy, Series IX, Volume 4, Part 3, pp. 137—157. Oxford Pergamon Press 1965. [Pg.87]

Hori, M., J. Spitalnik, J. (Eds.) (2004), Nuclear Production of Hydrogen - Technologies and Perspectives for Global Deployment, International Nuclear Societies Council ( Current Issues in Nuclear Energy Series) (published by American Nuclear Society in 2004). [Pg.97]

Tavoulareas, E.S., and Charpentier, J-P., Clean Coal Technologies for Developing Countries, World Bank Technical Paper No. 286, Energy Series, July 1995 (www.worldbank.org/html/fpd/em/power/EA/mitigatn/igccsubs.stm). [Pg.406]

G. A. Akin, H. P. Kackenmaster, R. J. Schrader, J. W. Strohecker, and R. E. Tate, Chemical Processing Plant Equipment Electromagnetic Separation Process, Oak Ridge, Tennessee, National Nuclear Energy Series, Div. I, Vol. 12, TlD-5232, U.S. AEC Technical Information Service, 1950. [Pg.337]


See other pages where Energy series is mentioned: [Pg.441]    [Pg.129]    [Pg.135]    [Pg.136]    [Pg.136]    [Pg.137]    [Pg.138]    [Pg.41]    [Pg.81]    [Pg.114]    [Pg.206]    [Pg.171]    [Pg.273]    [Pg.25]    [Pg.216]   
See also in sourсe #XX -- [ Pg.285 ]




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