16 algorithm-development-"Multiple"-"Prof"-"UNIS"-"DIFFER" positions at University of Maryland
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of these positions will be electrochemical modeling of high-energy cells. The successful applicant will develop detailed physics- and chemistry-based transient mathematical models for cell charge and discharge, based
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-distance collaborative autonomy; ● Autonomous Unmanned Systems: aerial robotics, robot motion planning, digital twin development, robot navigation of complex terrain, and simulation-based verification
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electrochemical modeling of high-energy cells. A particular emphasis will be on high-rate charging of this cell, at several temperatures. The successful applicant will develop detailed physics- and chemistry-based
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to transform the way society understands and manages the environment. By conducting cutting-edge research into today’s most pressing environmental problems, we are developing new ideas to help guide
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therapeutic development, biomanufacturing, and state-of-the-art measurement technologies, to support accelerated delivery of safe and effective medicines to the public. IBBR is a major initiative and supported
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Systems: aerial robotics, robot motion planning, digital twin development, robot navigation of complex terrain, and simulation-based verification for autonomous systems; field robotics; Cognitive Robotics