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-on-a-chip for ultrafast manipulation of 350-MHz hard X-ray pulses, Optics Express, 29, 13624 (2021). https://doi.org/10.1364/OE.411023 (Featured in a weekly News Release by the publisher: Tiny Chip-Based
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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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University of Notre Dame to develop novel on-chip superconducting quantum detectors with magnetic targets for low-energy axion dark matter detection. Key Responsibilities: Develop superconducting hybrid
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-ion battery recycling processes. This will require innovative approaches to solve challenges that go beyond the use of pilot scale or commercialized equipment. As such we are seeking candidates
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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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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