1970•Unpublished venueOpen access

IMPROVED CALCULATION OF ELASTO--PLASTIC SYSTEMS BY THE FINITE ELEMENT METHOD.

Knolls Atomic Power Lab., Schenectady, N.Y. (United States), W. T. Jordan

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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)

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Available 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)

Key concepts: Neutron, Range (aeronautics), Cover (algebra), Fission, Absorption (acoustics), Physics, Nuclear physics, Finite element method

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