324 research outputs found

    Oyang, J.

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    Oyang, J.

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    DS_DISC766278 – Supplemental material for Discovery of Small-Molecule Antagonists of the H3K9me3 Binding to UHRF1 Tandem Tudor Domain

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    Supplemental material, DS_DISC766278 for Discovery of Small-Molecule Antagonists of the H3K9me3 Binding to UHRF1 Tandem Tudor Domain by Guillermo Senisterra, Hugh Y. Zhu, Xiao Luo, Hailong Zhang, Guoliang Xun, Chunliang Lu, Wen Xiao, Taraneh Hajian, Peter Loppnau, Irene Chau, Fengling Li, Abdellah Allali-Hassani, Peter Atadja, Counde Oyang, En Li, Peter J. Brown, Cheryl H. Arrowsmith, Kehao Zhao, Zhengtian Yu, and Masoud Vedadi in SLAS Discovery</p

    [[alternative]]Michel de Montaigne's view on morality and its implication for moral education

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    [[abstract]]The purpose of this study is to explore Michel de Montaigne’s view on morality and its implication for moral education. The conclusions of this study are as follows: 1. Montaigne regards Nature as the origin of virtue and the guide of human beings. With this congenital guide in self, one could lead a moral life without external factors. 2. Montaigne regards freedom as the source of vice and the reason of the unsolvable conflict between nature and artificialness. However, freedom also brings chances and meanings to virtue, which is an important turning point from conflict to harmony.

    A Study of B+- ---> J / Psi pi+- and B+- ---> J / Psi K+- decays: Measurement of the ratio of branching fractions and search for direct CP violating charge asymmetries

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    This is the pre-print version of the Article. The official published version can be accessed from the links below. Copyright @ 2002 APSWe have studied the B±→J/ψπ± and B±→J/ψK± decays using a 20.7 fb-1 data set collected with the BABAR detector. We observe a signal of 51±10 B±→J/ψπ± events and determine the ratio B(B±→J/ψπ±)/B(B±→J/ψK±) to be [3.91±0.78(stat)±0.19(syst)]%. The CP-violating charge asymmetries for the B±→J/ψπ± and B±→J/ψK± decays are determined to be Aπ=0.01±0.22(stat)±0.01(syst) and AK=0.003±0.030(stat)±0.004(syst).This work was supported by DOE and NSF (USA), NSERC (Canada), IHEP (China), CEA and CNRS-IN2P3 (France), BMBF (Germany), INFN (Italy), NFR (Norway), MIST (Russia), and PPARC (United Kingdom). Individuals have received support from the Swiss NSF, A.P. Sloan Foundation, Research Corporation, and Alexander von Humboldt Foundation

    A Multi-level Cloud-based Virtual Health Exam System on Health Cloud

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    The design purpose of preventive health exams (PHEs) is to identify early asymptomatic disease and function that may affect health, making the exams a crucial measure in preventative healthcare. However, in practice, before health examinations, the majority of the public lacks practical personal health assessment for planning personal health examinations. This greatly affects the results and effectiveness of PHEs. To address this problem, this study proposes a virtual health examination (VHE) system that predicts examination results prior to health examinations, allowing people to conveniently select relevant test items before deciding to proceed with the actual examinations. The VHE model is designed to facilitate the support of all examination items and various grades or levels of health examination. The model uses cloud computing virtualization technology to rapidly integrate existing exam prediction models or newly developed models and follows a multi-level prediction framework. Therefore, different levels of VHE models can be constructed for each examination item, allowing the system to assemble various grades or levels of VHEs. Additionally, to respond rapidly to the large quantity of enquiries from the public, the system employs a cloud computing architectural design. Specifically, the VHE models deployed within the system are driven by the collaborative operations of two units in the system, vheMap and vheSum, to increase computing efficiency. This allows people to obtain their virtual exam reports quickly

    Measurement of J/ψ Production in Continuum e^+e^− Annihilations near √s = 10.6 GeV

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    The production of J/ψ mesons in continuum e^+e^− annihilations has been studied with the BABAR detector at energies near the Υ(4S) resonance. The mesons are distinguished from J/ψ production in B decays through their center-of-mass momentum and energy. We measure the cross section e^+e^− → J/ψX to be 2.52±0.21±0.21pb. We set a 90% C.L. upper limit on the branching fraction for direct Υ(4S) → J/ψX decays at 4.7×10^(-4)

    Rare B decays into states containing a J / psi meson and a meson with s anti-s quark content

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    We report a study of the B meson decays, B+-->J/psiphiK(+), B-0-->J/psiphiK(S)(0), B-0-->J/psiphi, B-0-->J/psieta, and B-0-->J/psieta' using 56x10(6) B (B) over bar events collected at the Y(4S) resonance with the BABAR detector at the PEP-II e(+)e(-) asymmetric-energy storage ring. We measure the branching fractions B(B+-->J/psiphiK(+))=(4.4+/-1.4(stat)+/-0.5(syst))x10(-5) and B(B-0-->J/psiphiK(S)(0))=(5.1+/-1.9(stat)+/-0.5(syst))x10(-5), and set upper limits at 90% confidence level for the branching fractions B(B-0-->J/psiphi)J/psieta)J/psieta('))<6.3x10(-5)

    Measurement of j / psi production in continuum e+ e- annihilations near s**(1/2) = 10.6-GeV

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    The production of J/ψ mesons in continuum e&lt;sup&gt;+&lt;/sup&gt;e&lt;sup&gt;-&lt;/sup&gt; annihilations has been studied with the BABAR detector at energies near the ϒ(4S) resonance. The mesons are distinguished from J/ψ production in B decays through their center-of-mass momentum and energy. We measure the cross section e&lt;sup&gt;+&lt;/sup&gt;e&lt;sup&gt;-&lt;/sup&gt;→J/ψX to be 2.52±0.21±0.21 pb. We set a 90% C.L. upper limit on the branching fraction for direct ϒ(4S)→J/ψX decays at 4.7×10&lt;sup&gt;-4&lt;/sup&gt;
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