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involved in SpinQuest at Fermilab and the MUSE experiment at PSI. Our hardware program includes the ePIC Barrel Imaging Calorimeter, and instrumentation R&D such as a polarized lithium-ion source for EIC
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) of electrochemical energy storage devices (diagnosis) and predict the SOH into the future (prognosis). The primary projects this postdoc will contribute to relate to lithium-ion batteries, advanced lead-acid batteries
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 3 months ago
limited to silicon nitride on-chip etalons and waveguides, lithium niobate modulators and waveguides, heterogeneous integration/packaging of photonic microdevices, on-chip precision atomic and molecular
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interdisciplinary, integrating atomic, nuclear, solid-state physics, and materials science. Our primary objective is to establish theoretical frameworks that complement ongoing experimental work involving ion traps
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. The successful candidate should have expertise and experience in process modeling, techno-economic analysis (TEA) and life cycle analysis (LCA) of lithium-ion batteries and/or recycling and resources to products
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at the development of new hydrometallurgical processes for the leaching of the black mass from lithium-ion batteries and the separation of critical metals using alternative solvents, within the scope of the REVITALISE
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existing research in the field of lithium-ion batteries as well as to investigate new approaches - for example, also on the basis of other components in the electric powertrain. A doctorate in the field
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theory calculations and machine learning (ML) to model the life- cycle stability in beyond-lithium ion batteries. Job Related Minimum Required Education and Experience Ph.D. in Materials Science, Physics