69 computational-physics "https:" "https:" "Institute of Computer Science" positions at National Renewable Energy Laboratory NREL
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leading the writing of research papers The ideal candidate should be able to conduct research work independently To learn more about the work this group does, check out the following link: https
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will continue to build from our learnings. https://pubs.rsc.org/en/content/articlelanding/2025/gc/d5gc01813g https://pubs.rsc.org/en/content/articlehtml/2018/gc/c7gc03747c https://pubs.rsc.org/en/content
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to see the following publications for some context: https://pubs.rsc.org/en/content/articlehtml/2024/gc/d4gc00765d https://pubs.rsc.org/en/content/articlehtml/2024/gc/d4gc04533e https
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. This position seeks an experienced and recognized energy expert who can strategize and grow demand forecasting research at NLR. This is a recent example of one of the tools NLR has developed: https://tinyurl.com
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laboratories. We offer robust professional development opportunities, and a competitive benefits package designed to support your career and well-being. Job Description The Advanced Computing Solutions Group in
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run, how much power they produce, and how to maintain system reliability. While MILP models are computationally efficient and scalable, they require significant simplifications of the physical power
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integrity, and cyber-physical resilience testing. Working across NLR’s energy, grid, and systems integration missions, the CRC leverages unique laboratory assets—including the ARIES Cyber Range—to conduct
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on NLR’s HPC Collaborate with NLR researchers to assess tradeoffs between model detail and computational time Process and visualize results to inform algorithmic design Author, present and assist in
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controllability under sensor limitations, uncertainty, communication delays, and cyber-physical disturbances. . Basic Qualifications Minimum of a 3.0 cumulative grade point average. Undergraduate: Must be enrolled
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cybersecurity research tools, simulation frameworks, and automation scripts to support quantitative analysis of cyber-physical dynamics Apply and extend threat modeling methodologies (e.g., MITRE ATT&CK, ATT&CK