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, primarily for recycling used nuclear fuel for use in advanced reactors. As a part of this team, you will: Apply electrochemical engineering principles to develop processes such as metal oxide reduction and
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their environmental impacts including energy use, water use, emissions, and resource depletion. Coursework and some project experience in application of mathematical optimization, statistics, or machine
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quantum information. The scalable design, synthesis, and control of materials capable of hosting quantum states, such as silicon carbide and diamond, play an integral role in solid state platforms
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The successful candidate will be part of a multi-institutional, cross-disciplinary team including researchers from multiple groups at the APS and at Northwestern University. They will have access to state
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We invite applications for up to two (2) Postdoctoral research positions in experimental hadronic physics at Argonne National Laboratory. You will be part of our team working on physics and
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Postdoctoral Appointee - Uncertainty Quantification and Modeling of Large-Scale Dynamics in Networks
modeling of large-scale dynamics in networks. This role involves creating large scale models of dynamic phenomena in electrical power networks and quantifying the risk of rare events to mitigate
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. Hands-on experience working at beamlines at synchrotron facilities. Strong communication skills for working in a multidisciplinary team environment. Ability to synthesize research findings into work
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or other scientific programming languages. Expertise in data processing, preferably with a focus on tomography. Excellent oral and written communication skills. Good collaboration skills and be able to work
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) year, with the possibility of extension for up to three (3) years, depending on funding and performance. Interested applicants should be prepared to arrange for three letters of reference to be provided
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The Materials Science Division at Argonne National Laboratory is hiring a postdoctoral appointee for investigating ion transport as a function of material structure and extent of hydration in