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research and development efforts in the synthesis, fabrication, and characterization of diamond and other host materials along with its associated solid-state quantum spin defects. As a key member of our
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will be performed on various transition metals, but it is expected that the Postdoc would also drive scientific efforts and expand the capability to other materials, such as high entropy alloys, advanced
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processes for energy storage applications. The researcher is expected to use solution-based synthesis approaches (e.g., electrospinning, slot-die coating, and 3D printing) to fabricate battery electrodes and
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performed on various transition metals, but it is expected that the Postdoc would also drive scientific efforts and expand the capability to other materials, such as high entropy alloys, advanced manufactured
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. The APS at Argonne National Laboratory is a world-leading synchrotron facility recently upgraded to deliver nanometer-to-micron resolution imaging with dramatically increased X-ray flux. This makes it
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demonstrates a professional attitude. Skilled written and verbal communicator, including the ability to present complex information so that it is understandable to a broad audience. Strong computer skills
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it in Physics with a focus on accelerator physics, or Electrical Engineering with a focus on RF/Accelerator Physics Strong background in accelerator physics and beam diagnostics. Excellent problem
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challenges that go beyond the published literature. As such we are looking for a candidate that has shown the ability to create their own experimental apparatus and materials to solve challenges. The position
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(NUCLEI); and two Topical Collaborations: 1) 3D quark-gluon structure of hadrons: mass, spin, and tomography, and 2) Nuclear Theory for New Physics. Further information on our group and its research
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beyond traditional error estimators, creating physics-based adaptation algorithms that intelligently predict where refinement will be most beneficial for smarter, more efficient simulations. We seek