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Traineeship in Hydrologic Sciences

Traineeship in Hydrologic Sciences
水文科学实习
批准号:
9354923
负责人:
Dara Entekhabi
金额:
$67.75万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1993
资助国家:
美国
项目状态:
已结题
起止时间:
1993-10-01 至 2000-03-31

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中文摘要
翻译
小行星9354923 在水文科学的实习计划是一个跨学科的研究和教育倡议之间的环境工程和水资源部门的土木和环境工程(C EE)和气象中心和物理海洋学(CMPO)在地球,大气和行星科学的麻省理工学院部门。& 这两个部门目前通过麻省理工学院全球变化科学中心在教育和研究项目方面有着密切的联系。 拟议的培训计划的重点是教育地球科学家在观察,分析和建模的物理过程,管理水文循环和气候系统。 对云、植被、地表过程和大气传输机制的作用进行调查,是国际、国家和研究所范围内对全球变化进行科学分析和界定可持续发展的关键。 麻省理工学院的建议非常注重本科和研究生阶段的培训和教育。 拟议的麻省理工学院水文科学培训计划将包括:l)多学科研究生教育,2)环境工程和水资源司的综合分析-观察-招聘和保留经验将包括在内。 ***
英文摘要
9354923 Entekhabi The traineeship program in the hydrologic sciences is an interdisciplinary reseach and education initiative between the Environmental Engineering and Water Resources division of the MIT Departments of Civil and Environmental Engineering (C&EE) and the Center for Meteorology and Physical Oceanography (CMPO) in the MIT Department of Earth, Atmospheric and Planetary Sciences. These two Departments currently have strong links, in terms of both educational and research programs, through the MIT Center for Global Change Science. The proposed traineeship program is focused on educating earth scientists in the observation, analysis and modeling of physical processes governing the hydrologic cycle and the climate system. Investigations on the role of clouds, vegetation, land-surface processes and atmospheric transport mechanisms are key to the international, national and Institute-wide initiatives on the scientific analysis of Global change and the definition of sustainable development. The MIT proposal is strongly focused on training and education at both undergraduate and graduate levels. The proposed MIT training program in the hydrologic sciences will include: l) multidisciplinary graduate education, 2) experience with integrated analys9s-observation-recruitment and retention in the Environmental Engineering and Water Resources Division will be included. ***
期刊论文(0)
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会议论文
Collaborative Research: NSF-BSF--Tropospheric Response to Zonal Asymmetry of the Stratospheric Polar Vortex and Its Aapplication to Subseasonal to Seasonal (S2S) Prediction
Collaborative Research: The combined influence of sea ice and snow cover on Northern Hemisphere atmospheric climate variability
Collaborative Research: Linkages in Winter-Time Climate Variability and the Basis for Climate Predictability in the North Atlantic Sector
Collaborative Research: WCR: Incorporation of Model Bias and Uncertainty in Land Surface Hydrologic Flux Prediction Using a Data Assimilation Network
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