20 software-defined-network-postdoc Postdoctoral positions at George Washington University
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, trainees and other researchers. As a TRAILS Postdoc, you will define your own research agenda in collaboration with other TRAILS researchers as well as the broader GWU, UMD, and MSU communities. Most
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relevant technical software, such as Cadence, SPICE, Verilog, etc. are needed; • Background knowledge in neural network algorithms preferred, but not required • Collaborative skills, student mentorship
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motivated by exciting application domains, including wildfire resilience, critical infrastructure protection, network design, and emergency healthcare operations such as opioid overdose response and out
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experience using statistical software (e.g., R and Python) and AI tools (e.g., Claude Code) are a key requirement for the position. Successful candidates should show potential to excel in tasks related to meta
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of undergraduate and graduate students. This position will be expected to support the training and mentorship of these students. Postdocs will design, organize and conduct specialized and advanced experiments using
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energy resources and technologies for various scenarios. The postdoc will train and supervise other team members and mentor students as necessary to advance the project. The project will require effective
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the lab, and/or provide supervision and guidance to laboratory staff, trainees and other researchers. As a TRAILS Postdoc, you will define your own research agenda in collaboration with other TRAILS
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respiratory dysfunction and/or Parkinson’s disease is strongly preferred. Strong analytical, organizational, and communication skills, with a record of scholarly productivity. Postdocs will design, organize
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for Postdoc Associates and Scholars that includes medical, dental, vision, life & disability insurance, time off & leave, well-being and various voluntary benefits. Postdoc Scholars may also be eligible
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networks for cancer metabolism, which further plays an important role in the development of novel cancer therapeutics. The Lee lab research tools include mammalian cancer cell lines, 3D organoid, xenografted