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Field
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and Synthetic Biology biologists, chemists, mathematicians, and engineers work together with the goal of understanding and quantitatively describing the complex functioning of living organisms. We
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 3 months ago
will compare the structure of organic compounds produced abiotically such as those extracted from meteorite samples with complex organic compounds produced by living systems. We will utilize tandem mass
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science, and materials engineering, with emphasis on understanding material behavior in complex chemical and radiological environments. Research activities may include the design of functional nanomaterials
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describe ecosystem structure and functioning as a function of size and other relevant properties. You will test the theoretical framework developed on empirical data currently collected independently in
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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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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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their aggregation and fibril formation. These systems are characterized using both purified and complex samples. The work is focussed on the development of a universal cryo-Cage for structural analysis of refractory
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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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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