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developed as diagnostic tools or therapeutics for cancer. The successful candidate will plan and conduct cell-based studies, establish and optimise experimental models, perform and analyse microscopy and
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. Our goal is to make mammalian cell engineering more predictive, scalable, and therapeutically actionable. Our lab works at the interface of synthetic biology, mammalian cell engineering, cell-based
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–electrolyte interphases (SEI/CEI), and advanced high-throughput electrochemical characterization, with particular emphasis on Scanning Electrochemical Microscopy (SECM) and Scanning Droplet Cell (SDC
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Postdoctoral Associate: Neurodegeneration – Hu Lab, Weill Institute (Research & Innovation) Postdoctoral Associate, Neurodegeneration – Hu Lab, Weill Institute The Weill Institute for Cell and
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optimization of electrolysis from the cell to the stack requires automated monitoring, analysis, and control of the operating parameters and processes. As part of this project, high-throughput experimental
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DOE-STP Critical Minerals and Energy Innovation - Alternative Fuels and Feedstocks Office Fellowship
feedstocks. These efforts include promoting data center expansion and enhancing nuclear plant efficiency through cost-effective bulk hydrogen storage and transport. Fuel Cell Technologies Sub-Program The Fuel