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AbstractAbstract
[en] Experimental detection techniques employed in the measurements of the 238U(n,ß) and 232Th(n,ß) cross sections are discussed. The experimental data base is considered and it is concluded that these cross sections are presently known with 5+- in the energy range of greatest importance for LMFBR applications. New measurements will have an insignificant impact on the 238U(n,ß) cross sections if they do not achieve an uncertainty of approx. = 2% or less
Primary Subject
Secondary Subject
Source
Smith, A.B.; Poenitz, W.P. (eds.); Argonne National Lab., IL (USA); Organization for Economic Co-Operation and Development, 75 - Paris (France); p. 288-301; 1982; p. 288-301; NEANDC/NEACRP specialists meeting on fast-neutron capture cross sections; Argonne, IL (USA); 20-23 Apr 1982; Available from NTIS, PC A99/MF A01; 1 as DE83008920
Record Type
Report
Literature Type
Conference; Numerical Data
Report Number
Country of publication
ACTINIDE NUCLEI, ALPHA DECAY RADIOISOTOPES, BARYON REACTIONS, BARYONS, BREEDER REACTORS, DATA, ELECTROMAGNETIC RADIATION, ELEMENTARY PARTICLES, ENERGY RANGE, EPITHERMAL REACTORS, EVEN-EVEN NUCLEI, FAST REACTORS, FBR TYPE REACTORS, FERMIONS, HADRON REACTIONS, HADRONS, HEAVY NUCLEI, INFORMATION, IONIZING RADIATIONS, ISOTOPES, KEV RANGE, LIQUID METAL COOLED REACTORS, NEUTRONS, NUCLEAR REACTIONS, NUCLEI, NUCLEON REACTIONS, NUCLEONS, NUMERICAL DATA, RADIATIONS, RADIOISOTOPES, REACTORS, TARGETS, THORIUM ISOTOPES, YEARS LIVING RADIOISOTOPES
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