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-Specified, Partially-Observable Robotic Rearrangement”, i.e., review the literature in this domain, identify directions that will advance the capabilities of robotic manipulators to rearrange objects in
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the technology team (full time and students) to develop and support technical solutions in robotic process automation, chatbots, in-house developed applications, and databases. Leads the analysis, design
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choice (e.g., 3-D Printing and Additive Manufacturing; Biotechnology and Food Security; Robotics and Miniaturization) that will be acceptable to a broad range of science and engineering undergraduate
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the cellular mechanisms of drug synergy in M. tuberculosis. Among the key duties of this position are the following: Uses conventional and novel methods including advanced robotics to screen libraries of M
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laboratory BSL2 and BSL3 pathogens as part of drug development efforts. Uses conventional and novel methods including advanced robotics to screen libraries of M. tuberculosis for drug tolerance and drug
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laboratory BSL2 and BSL3 pathogens as part of drug development efforts. Uses conventional and novel methods including advanced robotics to screen libraries of M. tuberculosis for drug tolerance and drug
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learning, high-performance computing, computer vision, socially cognizant robotics, cyber-physical systems, and nano/bioelectronics. Faculty honors include membership in the National Academies, 13 IEEE
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with applications to Advanced Manufacturing, Robotics, Artificial Intelligence (AI)- and Machine Learning (ML)-based Engineering Design and Optimization, Integrated Computational Manufacturing and