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models for high-temperature structural materials with applications in nuclear reactors and other energy systems. The candidate will collaborate with ANL staff to review, validate, and enhance methods
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proficient in performing chemical reactions under high-temperature and high-pressure conditions incorporating various approaches including catalytic processes, oxidizing/reducing environments, different gases
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phenomena Create new reduced-order models and submodels related to fluid flow, heat transfer, thermochemistry, and electrochemistry in reactive systems Use modeling tools such as computational fluid dynamics
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synchrotron and X-ray free-electron laser (XFEL) facilities for exploring transient states with high temporal and spatial resolution. Although the maximum salary for the position is $117,925, the actual range
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The Dynamics and Structure Group (DYS) at the Advanced Photon Source (APS) seeks a highly motivated Postdoctoral Appointee to develop High-Pressure, High-Temperature X-ray Photon Correlation
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superconducting RF (SRF) technology. Since then, a transformative SRF approach using Nb₃Sn has emerged, offering performance comparable to niobium while enabling operation at higher temperatures—potentially
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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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, electrochemistry, and high-temperature chemical processes. Problem-solving skills, including the ability to identify technical challenges, develop innovative solutions, and implement practical strategies. Strong
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, MKID, or related) and SQUID-based readout. Low-temperature cryogenics (e.g., ADRs, dilution refrigerators, pulse-tube cryocoolers) and high-/ultra-high-vacuum systems. X-ray spectroscopy or synchrotron