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for the proposed XRS microscopy instrument, including: performance requirements (throughput/solid angle, energy resolution, imaging/spatial resolution, stability), spectrometer architecture and scaling plan
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science for quantum information hardware with the industrially mature solid state platforms of silicon/silicon germanium and silicon carbide spin qubits. The position will focus on heterogeneous integration
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, primarily for recycling used nuclear fuel to support the deployment of advanced reactors. The selected candidate will develop and optimize novel separations chemistries to recover actinide and rare earth
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of energy critical materials. The candidate will also assist with evaluating the impacts of new mining activity on domestic supply chains that rely on critical materials (such as rare earth magnets
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and chemistry at charged solid–liquid interfaces during liquid–solid phase transformations under controlled temperature gradients. The successful candidate will be a creative experimentalist who can
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processing Strong background in ferroelectrics, photonics, or solid-state materials Demonstrated ability to work independently and collaboratively in a multidisciplinary environment Strong written and oral
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staff scientists, engineers, postdocs, and students, with an active research portfolio that spans: Leading electron-scattering experiments at Jefferson Lab (CLAS12, SoLID, Hall A, B, and C) Major