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/vegetation drag parameterizations. E3SM integration and coupling. Integrate two-way land–river–ocean couplings with a subgrid scale ocean model to support upstream river boundary conditions and coastal
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tests and electrochemical operations with molten salts that may contain actinides and lanthanides within controlled atmosphere gloveboxes. Apply chemical thermodynamic and kinetic theories to understand
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foundational models to describe IDP interactions under various physiological conditions, both normal and cancer related Use these models to iteratively design, validate, and refine experiments, leading
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High-Energy Physics (HEP). We seek highly qualified candidates with interest and experience in ML algorithms including unsupervised techniques, time-series modeling, and clustering algorithms
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leaching, solvent extraction, ion exchange, electrodialysis, membrane separation, and crystallization or precipitation. Position Requirements Recent or soon-to-be-completed PhD (typically completed within
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for Microelectronics” —a physics-informed AI framework that links composition, structure, and operating conditions to defect evolution and functional performance. The successful candidates will lead experimental
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Postdoctoral Appointee - Investigation of Electrocatalytic Interfaces with Advanced X-ray Microscopy
synchrotron X-ray measurements, primarily X-ray fluorescence microscopy (XFM), to investigate catalytic interfaces under operando electrochemical conditions. The successful candidate will contribute
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Spectroscopy (HPHT-XPCS) for probing non-Newtonian viscoelasticity under extreme conditions. The successful candidate will lead : Integration of high-temperature diamond-anvil-cell (DAC) environments with Small
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be proficient in working with high-temperature and high-pressure processes including different gases and supercritical conditions and should also have experience in physicochemical solution phenomena
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realistic operating conditions. Explore and evaluate mitigation strategies to improve membrane longevity and resilience in water and resource recovery applications. Collaborate with internal and external