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Field
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, including synthesis of fuel materials and recycling of used MSR salts. The selected candidate will develop and optimize process chemistries to synthesize chloride and fluoride species, recover metals and
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one or more of the following will be given priority: Cryo‑EM grid optimization, data collection (Krios/Glacios), and reconstruction workflows Structural analysis of dynamic/heterogeneous complexes
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experimental design and analytical method optimization, training others in laboratory skills and analytical chemistry, and strong writing and communication skills. Applications, including a cover letter and a
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Technical Development Work • Become proficient at programming the digital magnetic resonance spectrometer (DMRS) • Optimize and validate MR techniques to measure pO2 in encapsulated devices • Perform data
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improvements. Examples include optimizing the squeezing of the vacuum to minimize quantum noise, a prototype cryogenic interferometer, using machine learning for nonlinear feedback control, devising techniques
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, safety, and compliance. Perform preventive maintenance on laboratory equipment to keep them in optimal working condition. Conduct experiments related to identifying metabolites in plant and biological
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contribute to experimental optimization. Perform advanced laboratory techniques, including RT-PCR, histology, mRNA extraction, chromatography, and electrophoresis. Prepare and maintain culture media, reagents
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optimally interact with a varied population of diverse audiences. We are looking for someone who shares our values and who will support the mission of the university through their work. Qualifications: PhD in
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related area is required. Experience: Demonstrated experience in strong optimization computational skills, proficiency in one of the programming languages R, Matlab, and Python, and expertise in high
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 2 months ago
development of methods for chiral analysis of amino acids using CE-MS, and optimization of limits of detection. This initial research will utilize a newly installed SCIEX CESI 8000 capillary electrophoresis