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is committed to a diverse and inclusive workplace that fosters collaborative scientific discovery and innovation. In support of this commitment, Argonne encourages minorities, women, veterans and
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approaches to solve challenges that go beyond the use of pilot scale or commercialized equipment. As such we are seeking candidates that have demonstrated the ability to design and build their own experimental
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experimental results is required: TEM and FIB/SEM. Knowledge of materials science principles, theories, advanced characterization techniques, and practices for the design, analysis, and testing of candidate
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enabling their research goals on Aurora through collaboration and innovation. There are opportunities to engage with research in AI (LLMs, foundation models, etc), performance optimization, portable
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at Argonne. In this role, the candidate will design, synthesize, and evaluate cutting-edge electrocatalysts for converting CO2 into valuable chemicals and enabling water splitting, and perform comprehensive
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postdoc will: Apply knowledge to design, fabricate, assemble, and test subsystems for the N=126 Factory and experiments. Operate and lead improvements for any and all parts of the N=126 Factory including
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years or is soon to be completed Considerable experience in at least two of the following fields: X-ray microscopy, engineering design, cryogenic microscopy, synchrotron instrumentation Strong trouble
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analysis and generate analytics from power grid measurements. Design and implement game theory and reinforcement learning-based solutions for power grid control problems or cybersecurity applications
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work with interdisciplinary research teams; collaborate with university, industry, and national laboratories partners; and drive innovation in science and engineering. In this position, the postdoctoral
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Our mission is to accelerate major scientific discoveries and engineering breakthroughs for humanity by designing and providing world-leading computing facilities in partnership with