IMPROVED CALCULATION OF ELASTO--PLASTIC SYSTEMS BY THE FINITE ELEMENT METHOD.
Knolls Atomic Power Lab., Schenectady, N.Y. (United States), W. T. Jordan
Abstract
Knolls Atomic Power Lab., Schenectady, N.Y. (United States), W. T. Jordan
Abstract
were predicted by the SWAKRAUM double Pl approximation to within the experimental uncertainty of plus or minus 5%. The epicadmium neutron absorption rates which cover the range from 0.5 ev to fission energies are predicted by the MUFTKARE programs to within the experimental uncertainty of plus or minus 7%. In general, the calculated neutron absorption rates showed a random deviation from the experimental values. No apparent bias was observed in either the fuel or the poison captures. (auth)
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were predicted by the SWAKRAUM double Pl approximation to within the experimental uncertainty of plus or minus 5%. The epicadmium neutron absorption rates which cover the range from 0.5 ev to fission energies are predicted by the MUFTKARE programs to within the experimental uncertainty of plus or minus 7%. In general, the calculated neutron absorption rates showed a random deviation from the experimental values. No apparent bias was observed in either the fuel or the poison captures. (auth)
Key concepts: Neutron, Range (aeronautics), Cover (algebra), Fission, Absorption (acoustics), Physics, Nuclear physics, Finite element method