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The Chemical Sciences and Engineering Division is seeking a highly qualified and motivated postdoctoral researcher to join our team in the area of light-matter interactions, with a particular focus
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of complex propulsion systems involving modeling of multi-phase flows, turbulent combustion, heat transfer, combustion, and thermo-mechanical fluid-structure interaction by further developing commercial/in
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advanced spectroscopic techniques. Design, synthesize, and characterize metal-ligand complexes supported on metal oxide and/or non-traditional support materials. Evaluate the catalytic activity
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applications in beamline science and high energy physics, as well as interaction with device and materials researchers. Primary responsibilities will be to design and implement new methods to deploy, monitor
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team that focuses on materials for classical microelectronic interfaces and quantum information science. The group actively interacts with the broader Argonne and UChicago community of scientists as
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of the devices, and designing and executing time-resolved X-ray experiments with MEMS-based X-ray optics. We are seeking highly motivated candidates to drive the project in an independent manner while interacting
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qubit-based quantum processors and connect them via a campus-scale fiber-optic network. The postdocs will design and fabricate superconducting transmon qubits and microwave-optical quantum transducers and
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the last 0-5 years) in Atmospheric Science, Climate Science, or other climate-related science Expertise in any of the following: cloud and convection, severe weather, land-atmosphere interactions, impacts
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impact of multiple environmental conditions. Participate in experiments at Department of Energy (DOE) national user synchrotron facilities. Participate in interdisciplinary discussions aimed at the design
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and reports describing results of development work, analyses, and investigations. Position Requirements Knowledge of nuclear engineering principles, theories, and practices for the design and analysis