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-resolved fluorescence methods for studying protein-protein interactions and protein structure-function relationships in live cells. This project will focus on elucidating the structure-function mechanisms
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enzymes/complexes. 6. Studies of ETFs containing modified flavins. 7. Kinetic characterizations. 8. Investigation of possible significance of buried disulfide bonds. 9. Fluorescence including single
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the area of Neurosciences and/or Network Analysis. Ability to perform advanced structural and functional image analysis. 6 years of experience in Neuroscience. Responsibilities Research Under general
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postdoctoral fellows representing various departments and programs. The fellow will be supported by a dual-mentor structure, including a faculty mentor in the Tisch College and a CEVIHE faculty mentor, to
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for Microelectronics” —a physics-informed AI framework that links composition, structure, and operating conditions to defect evolution and functional performance. The successful candidates will lead experimental
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consideration market benchmarks, if and when appropriate, and internal equity to ensure fair compensation relative to the university’s broader compensation structure. We are committed to offering competitive and
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centers of the future. This will start with the development of a framework for capturing the multidimensional and complex potential impacts (both positive and negative) that are unique to each community in
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development at Ames National Laboratory that address domestic supply-chain resilience. The role will pursue mechanisms, structure–property relationships, and phase evolution, associated with the discovery
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experiments independently on expression, purification, and molecular characterization of a variety of recombinant proteins that will be used for further analysis by structural and proteomics technologies. Job
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biostatistics and machine learning, with particular emphasis on robust and trustworthy methods for learning from complex biomedical data. The postdoctoral associate will join an active and collaborative research