7 research outputs found

    总服务台业务拓展畅想

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    报告内容:1、现状分析:人员结构-》精英团队;目前岗位借书、书库、咨询;业务拓展瓶颈,事情杂碎、业务繁多、难见成果、内容枯燥、缺乏创新 2、基于目前基础业务的业务扩展和岗位重构 3、指导学生助理参与借还书及书库管理工作 4、新业务方向:提升工作内容;实现自我价值;更深层次交流;尊重及满足感;不断学习创新;发挥个人特长;富余人员安排;发挥业务优势 5、新业务:图书馆基础业务培训 6、新业务:教参项目 7、新业务:读书沙龙及阅读辅导 8、可能出现的问题:学生助理有效管理;项目操作方式;基础业务与扩展业务时间分配;核心业务定

    外籍读者服务模式的主动改变:厦门大学图书馆的经验

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    随着厦门大学国际声望的提升,外籍师生渐增。外籍读者服务已成为厦门大学图书馆对外服务的重要环节。语言障碍、硬件不足并非影响服务效果的重要因素,而服务模式的主动改变是改善服务质量的重要手段。在实际工作中,厦门大学图书馆试图开创基于理念创新的全新服务模式,更好地为外籍读者服务,同时也提高了整体服务能力

    Exploration on that the University Library Cultivates Reader's Behavior Habits by Technological Means

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    近年来,高校图书馆的占座问题日益凸显。以厦门大学图书馆座位管理系统实施后对读者行为习惯的改变为例可以发现,高校图书馆能够借助科技手段培养读者利用公共资源的良好习惯,从而提高高校图书馆公共资源的利用率,最终形成读者使用图书馆舒适、自然,而图书馆管理顺畅、有序的双赢局面。In recent years, the problem of occupying the seat in the university library has become increasingly prominent.Taking the change of reader's behavior after the implementation of Xiamen University Library Seating Management System as an example, we could find that the university library could help readers to cultivate good habits of using public resources by technological means, thus improve the utilization rate of public resources, ultimately form the win-win situation that the university reader uses the library comfortably and naturally, and the library management is smooth and orderly

    高校图书馆创意迎新的策划、实施与效果评估

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    迎新工作是高校图书馆的常规任务。厦门大学图书馆突破传统规程创意迎新,为大学新生提供了更好的服务,展现了馆员们的智慧和特长,加强了团队合作

    转动惯量差与超变形核中的对力强度

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    Prediction of Energy Resolution in the JUNO Experiment

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    International audienceThis paper presents the energy resolution study in the JUNO experiment, incorporating the latest knowledge acquired during the detector construction phase. The determination of neutrino mass ordering in JUNO requires an exceptional energy resolution better than 3% at 1 MeV. To achieve this ambitious goal, significant efforts have been undertaken in the design and production of the key components of the JUNO detector. Various factors affecting the detection of inverse beta decay signals have an impact on the energy resolution, extending beyond the statistical fluctuations of the detected number of photons, such as the properties of liquid scintillator, performance of photomultiplier tubes, and the energy reconstruction algorithm. To account for these effects, a full JUNO simulation and reconstruction approach is employed. This enables the modeling of all relevant effects and the evaluation of associated inputs to accurately estimate the energy resolution. The study reveals an energy resolution of 2.95% at 1 MeV. Furthermore, the study assesses the contribution of major effects to the overall energy resolution budget. This analysis serves as a reference for interpreting future measurements of energy resolution during JUNO data taking. Moreover, it provides a guideline in comprehending the energy resolution characteristics of liquid scintillator-based detectors
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