Showing 1 - 20 results of 55 for search '"B.S.E."', query time: 0.08s Refine Results
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    Biosynthesis of UDP-GlcNAc(3NAc)A by WbpB, WbpE, and WbpD: Enzymes in the Wbp Pathway Responsible for O-antigen Assembly in Pseudomonas aeruginosa PAO1 by Larkin, Angelyn, Imperiali, Barbara

    Published 2012
    “…One of the carbohydrates in this repeating unit, the rare diacetylated aminuronic acid derivative 2,3-diacetamido-2,3-dideoxy-β-d-mannuronic acid (ManNAc(3NAc)A), is thought to be produced by five enzymes (WbpA, WbpB, WbpE, WbpD, and WbpI) in a stepwise manner starting from UDP-GlcNAc. …”
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    Measurements of Charged Current Lepton Universality and |V[subscript us]| Using Tau Lepton Decays to e-ν[over-bar]eνtau, mu-ν[over-bar]muν, pi-νtau, and K-νtau by Dujmic, Denis, Henderson, Shawn Wesley, Sciolla, Gabriella, Yamamoto, R. K., Zhao, M., Fisher, Peter H, Cowan, Ray F, Spitznagel, Michael A

    Published 2011
    “…Using 467  fb-1 of e+e- annihilation data collected with the BABAR detector, we measure B(τ- -->mu-ν̅ muντ)/B(τ- -->e-ν̅ eντ)=(0.9796±0.0016±0.0036), B(τ- -->pi-ντ)/B(τ- -->e-ν̅ eντ)=(0.5945±0.0014±0.0061), and B(τ-→K-ντ)/B(τ- -->e-ν̅ eντ)=(0.03882±0.00032±0.00057), where the uncertainties are statistical and systematic, respectively. …”
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    Terascale Physics Opportunities at a High Statistics, High Energy Neutrino Scattering Experiment: NuSOnG by Adams, T., Batra, P., Bugel, Leonard G., Camilleri, L., Conrad, Janet, de Gouvea, A., Fisher, Peter H., Formaggio, Joseph A., Jenkins, Jon M., Karagiorgi, Georgia Stelios, Kobilarcik, T. R., Kopp, S., Kyle, G., Milner, Richard G., Loinaz, W. A., Mason, D. A., Moore, R., Morfin, J. G., Nakamura, M., Naples, D., Nienaber, P., Olness, F. I., Owens, J. F., Pate, S. F., Pronin, A., Seligman, W. G., Shaevitz, M. H., Schellman, H., Schienbein, I., Syphers, M. J., Tait, T. M. P., Takeuchi, T., Tan, C. Y., Van de Water, R. G., Yamamoto, Richard K., Yu, J. Y.

    Published 2009
    “…This experiment uses a Tevatron-based neutrino beam to obtain over an order of magnitude higher statistics than presently available for the purely weak processes v [subscript U+00B5 ] + e[superscript -] [right arrow] v [subscript U+00B5 ] + e[superscript -] and v [subscript U+00B5 ] + e[superscript -] [right arrow] v[subscript e] + U+00B5 [superscript -]. …”
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    Study of the e⁺e⁻→π⁺π⁻π⁰ process using initial state radiation with BABAR by Sciolla, Gabriella, Sekula, S. J., Yamamoto, R. K., Cowan, Ray F, Taylor, Frank E

    Published 2012
    “…From the measured 3π mass spectrum we have obtained the products of branching fractions for the ω and ϕ mesons, B(ω→e⁺e⁻)B(ω→3π)=(6.70±0.06±0.27)×10⁻⁵ and B(ϕ→e⁺e⁻)B(ϕ→3π)=(4.30±0.08±0.21)×10⁻⁵ and evaluated the e⁺e⁻→π⁺π⁻π⁰ cross section for the e⁺e⁻ center-of-mass energy range 1.05 to 3.00 GeV. …”
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    High pT [p subscript T] nonphotonic electron production in p+p collisions at √s=200  [square root of s=200] GeV by Balewski, Jan T., Betancourt, Michael Joseph, Corliss, Ross Cameron, Hays-Wehle, James Prewitt, Leight, William Axel, Seele, Joseph Patrick, Surrow, Bernd, Milner, Richard G, Redwine, Robert P, Steadman, Stephen G, van Nieuwenhuizen, Gerrit J, Walker, Matthew H

    Published 2011
    “…Using the relative contributions of B and D mesons to nonphotonic electrons, we determine the integrated cross sections of electrons (e++e-/2) [e superscript + plus e superscript - /2)] at 3  GeV/c<pT<10  GeV/c [3 GeV/c < p subscript T <10 GeV/c] from bottom and charm meson decays to be [(dσ(B→e)+(B→D→e))/(dye)]ye=0=4.0±0.5(stat)±1.1(syst) [[(d delta subscript (B→e) + (B→D→e) / (dY subscript e)] subscript ye=0 = 4.0±0.5(stat)±1.1(syst)]  nb and [(dσD→e)/(dye)]ye=0=6.2±0.7(stat)±1.5(syst) [[(d delta subscript D→e) / (dY subscript e)] subscript ye=0 = 6.2±0.7(stat)±1.5(syst)]  nb, respectively.…”
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    Analytics for Smart Grid Cybersecurity by Choucri, Nazli, Agarwal, Gaurav

    Published 2022
    “…(Elsewhere we consider (a) system-wide level, (b) aviation e- landscape, (c) electric vehicles, and (d) SCADA for smart grid).…”
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    Pre-Conditioners and Relations between Different Measures of Conditioning for Conic Linear Systems by Epelman, Marina A., 1973-, Freund, Robert M.

    Published 2004
    “…This paper studies measures of conditioning for a conic linear system of the form (FPd): Ax = b, x E Cx, whose data is d = (A, b). We present a new measure of conditioning, denoted pd, and we show implications of lid for problem geometry and algorithm complexity, and demonstrate that the value of = id is independent of the specific data representation of (FPd). …”
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    Working Paper
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    BBF RFC 56: “Part Flavors” For Peptide-Coding Parts by Anderson, J. Chris

    Published 2010
    “…This facilitates automated design strategies in which an abstract device (such as promoter.rbs.CDS.terminator) can be instantiated to grammatically correct compositions (such as r0040.b0034.E0040.b0015). The concept is an extension of RFC 13 which proposes to describe CDS parts as “head,” “internal,” “special,” or “tail” domains. …”
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    Technical Report
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    Theoretical Efficiency of A Shifted Barrier Function Algorithm for Linear Programming by Freund, Robert M.

    Published 2004
    “…This paper examines the theoretical efficiency of solving a standard-form linear program by solving a sequence of shifted-barrier problems of the form minimize cTx - n (xj + ehj) j.,1 x s.t. Ax = b , x + e h > , for a given and fixed shift vector h > 0, and for a sequence of values of > 0 that converges to zero. …”
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    Working Paper
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    Search for a new heavy gauge boson W′ with event signature electron+missing transverse energy in pp̅ collisions at √s=1.96  TeV by Gomez-Ceballos, Guillelmo, Goncharov, Maxim, Makhoul, Khaldoun, Paus, Christoph M. E., Bauer, Gerry P

    Published 2011
    “…No significant excess above the standard model expectation is observed and we set upper limits on σ·B(W′→eν) [delta multiplied by beta (W′→eν)]. Assuming standard model couplings to fermions and the neutrino from the W′ boson decay to be light, we exclude a W′ boson with mass less than 1.12  TeV/c2 [TeV / c superscript 2] at the 95% confidence level.…”
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