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  • Collaboration, NuTeV; Adams, T; Alton, A; Avvakumov, S; de Barbaro, L; de Barbaro, P; Bernstein, R H; Bodek, A; Bolton, T; Brau, J; Buchholz, D; Budd, H; Bugel, L; Conrad, J; Drucker, R B; Frey, R; maggio, J; Goldman, J; Goncharov, M; Harris, D A; Johnson, R A; Koutsoliotas, S; Kim, J H; Lamm, M J; Marsh, W; Mason, D; McNulty, C; McFarland, K S; Naples, D; Nienaber, P; Romosan, A; Sakumoto, W K; Schellman, H; Shaevitz, M H; Spentzouris, P; Stern, E G; Tamminga, B; Vakili, M; Vaitaitis, A; V Wu; Yang, U K; J Yu; Zeller, G P

    arXiv.org, 06/1999
    Paper

    Neutrino deep-inelastic scattering provides a means to study both the strange and charm content of the nucleon. The NuTeV experiment (Fermilab E-8Neutrino deep-inelastic scattering provides a means to study both the strange and charm content of the nucleon. The NuTeV experiment (Fermilab E-815) takes full advantage of separated neutrino and anti-neutrino beams to probe the nucleon. The strange sea is studied with charged-current charm production resulting in an opposite-signed two muon final state. The charm content of the nucleon is probed via neutral-current charm production creating an event with a single wrong-signed muon. Preliminary results are presented for both analyses.