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simulations for plume-in-grid models Requirements: university degree (MSc or equivalent) in the field of aerospace engineering, physics or similar solid knowledge of Physical and Analytical Chemistry (phase
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description Third-cycle subject: Electrical Engineering The challenge: The electrical power grid is undergoing a fundamental transformation driven by increased digitalization, deregulation, and widespread
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. The Polytechnic School (https://poly.engineering.asu.edu/ ), one of the eight Fulton Schools, houses a vibrant fundamental and applied engineering research community (learn more at https
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the needs of diverse audiences; adapt curriculum in partnership with community organizations specializing in areas including labor, housing, emergency response, grid reliability, and public health
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smart grids. This high level of knowledge transfer is achieved through both competitive research projects and direct contracted research. Therefore, public and private entities have access to a pool of
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promotes cooperation between academia and industry by addressing research on daily life issues, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids
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between academia and industry by addressing research on daily life issues, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids. This high level of
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such as distributed generation, interconnection, interaction among local grids and storage, with a particular emphasis on determining exchange prices for energy resources that can stimulate the development
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professional development opportunities, and a competitive benefits package designed to support your career and well-being. Job Description This Grid Automation and Controls group at The National Laboratory
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especially challenging in Arctic and sub-Arctic regions, due to the extremely cold weather, long winters, limited daylight, and weak grid infrastructures. At the same time, these regions present emerging