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Field
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focused on advanced tissue imaging for diagnostic and intraoperative applications. The successful candidate will work on federally funded projects aimed at developing and applying novel microscopy platforms
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Your Job: Development and optimization of high-temperature heat pipes for fusion applications Numerical simulations of heat transfer and fluid dynamics in heat pipes using COMSOL, ANSYS, or similar
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executing manufacturing trials, and operating high-temperature furnaces and metal forming equipment. The researcher will be responsible for optimizing processing parameters to enhance composite performance
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main campus. Depending on the position, the work will involve a combination of experimental research, process simulation, reactor operation, and system-level optimization. We are currently advertising
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varying carbon content and execution of solid-phase hot extrusion trials. Responsibilities include optimizing process parameters to improve composite quality and performance. The role also involves
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Department Name RADIATION ONCOLOGY Location Code RADIATION ONCOLOGY (06720A) Is this split and/or fully grant funded? Yes Duties and Responsibilities Dosimetry techniques optimization: Accurate dose
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biology, and related areas. The interested candidate will work directly with experimental scientists within a wet lab setting to facilitate the management, analysis, and visualization of the mass
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-Mat) in Düsseldorf, Germany. The successful candidate will work on the DFG-funded project "BRITE-TIME – Identifying brittle-ductile transitions in intermetallic-metal hetero-interfaces". This project
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the functionality of food molecules. Integrate molecular biology, bioinformatics, and protein engineering tools to improve enzyme performance. Design and optimize enzyme-catalyzed reactions for food structure
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of expression systems Metabolic flux analysis for pathway characterization and optimization Development and operation of continuous fermentation processes under strict anaerobic conditions Strategic contribution