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Field
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, that includes glaucoma, diabetic retinopathy, wet age related macular degeneration (AMD), dry AMD, fibrotic and oxidative conditions. This position will focus on investigating disease mechanisms and therapeutic
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tissue microenvironment contribute to metabolic reprogramming in the early stages of prostate cancer and that this leads to an oxidative switch enhancing the turnover of lipids. The primary goal
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under supervision. These metabolites include but are not limited to oxidized lipid derivatives. The candidate will also perform statistical analyses to provide further insight into the biological roles
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calibration to support reliable regional projections. Your work will play a vital role in mapping regional mitigation hotspots and assessing the trade-offs between nutrient use efficiency (NUE), nitrous oxide
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. This position is not eligible for H-1B visa sponsorship. In this position the research will focus on lab studies and analysis of iron oxide reduction with H2 (and ammonia) The goal is to develop a fully
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-on experimental development of metallothermic routes for producing rare earth metals from rare earth compounds, including oxides, chlorides, and fluorides. This work builds on the “Ames Process” for rare earth
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force microscopy, magnetic and dielectric characterization, oxide thin-film growth, and close collaboration with leading theoretical groups. We pursue fundamental experimental research while maintaining a
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fabrication, including mask design, metal sputtering, laser or e-beam lithography, etching, and device integration Familiarity with thin-film materials (e.g., oxides, dielectrics, metals) and their integration
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, both focused on multimodal synchrotron characterization of defects and interfaces in oxides and 2D materials. These positions are part of a cross-facility initiative to build an “AlphaFold
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) surgeries to model ischemic stroke in mice. Conduct biochemical assays to analyze lipid signaling, enzyme expression, and oxidative stress markers in brain tissue. Perform Western blotting, PCR