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AbstractAbstract
[en] The value of sin 2θW can be determined to ±0.002 - 0.004 by using the semileptonic decays of the KLto provide a beam of νμ and bar νμ and measuring the ratio R' = σ(bar νμ, NC)/σ(νμ, NC). Systematic errors which have limited the world-average of previous νμN determinations of sinθW to ±0.008 are largely eliminated. This experiment will determine the radiative corrections Δr in νμN scattering to ±0.007 and in combination with W,Z mass measurements will provide precise tests of the Standard Model at the tree and one-loop level. 6 refs., 1 fig., 1 tab
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May 1989; 7 p; 12. international workshop on weak interactions and neutrinos; Ginosar (Israel); 9-14 Apr 1989; CONF-8904226--8; CONTRACT AC02-76CH03000; Available from NTIS, PC A02/MF A01 as DE89017882; OSTI; INIS; US Govt. Printing Office Dep
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Report
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Conference
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BOSONS, CORRECTIONS, DECAY, DETECTION, ELEMENTARY PARTICLES, FERMIONS, FIELD THEORIES, GRAND UNIFIED THEORY, HADRONS, INELASTIC SCATTERING, INTERACTIONS, INTERMEDIATE BOSONS, LEPTON-BARYON INTERACTIONS, LEPTON-HADRON INTERACTIONS, LEPTON-NUCLEON INTERACTIONS, LEPTONS, MASSLESS PARTICLES, MATHEMATICAL MODELS, MESONS, NEUTRINO-NUCLEON INTERACTIONS, NEUTRINOS, PARTICLE DECAY, PARTICLE INTERACTIONS, PARTICLE MODELS, PSEUDOSCALAR MESONS, QUANTUM FIELD THEORY, RADIATION DETECTION, SCATTERING, STRANGE MESONS, STRANGE PARTICLES, UNIFIED GAUGE MODELS, WEAK PARTICLE DECAY
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