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Field
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analyze electrochemical oxidation/reduction studies to validate drug-dependent or biomarker-dependent electron transfer and sensor response. • Synthesize and characterize nanoparticles of various
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applications as soon as possible. Required Field(s): · Advanced fabrication process of emitting devices, mainly laser diodes . · Materials: wide-band gap nanostructure devices (mainly oxides, III
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oxidative stress and mitochondrial function assays which include measuring reactive oxygen species and mitochondrial bioenergetics. f. Simulating microgravity conditions to study physiological responses. g
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, Chemical Engineering, Material Science and Engineering, or a very closely aligned field. Preferred Qualifications: Experience in studying fluid-solid interactions, reactive material reduction/oxidation
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-power devices: novel transistors (tunneling field-effect transistors, and III-V metal-oxide-semiconductor field-effect transistors); (3) Light-emitting devices and high-speed detectors: light-emitting
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, immunoprecipitation, gene expression assays, RNA/protein isolation, and autophagy/oxidative stress assessments. Perform neuroimaging and histological techniques such as immunofluorescence, immunohistochemistry, Nissl
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Postdoctoral Research Associate- AI/ML Accelerated Theory Modeling & Simulation for Microelectronics
length/time scales, to provide improved mechanistic insights into nanomaterials response. Bulk of the work will be on novel materials for next-generation microelectronic devices (e.g. oxide ferroelectrics
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U.S. Department of Energy (DOE) | Washington, District of Columbia | United States | about 19 hours ago
in-depth research and analyses for comprehensive and long-term energy policy planning and strategy development on domestic production of processed critical minerals (oxides, oxalates, salts, and metals
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oxide and nitride synthesis Experience with perovskite and fluorite material systems Familiarity with rare-earth compounds and orthoferrites Minimum Qualifications: Requires a minimum of a Ph.D. or
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repair, oxidative stress, metabolic rewiring, and immune modulation in FLASH/UHDR-RT). Preclinical model development (orthotopic murine systems, patient-derived xenografts, 3D organoids). Correlative