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thereafter. Project overview The goal of this project is to advance the understanding of failure mechanisms in optical phase change materials used in photonic devices, using synchrotron X rays and X ray free
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delivery mechanisms. Knowledge of molecular trophic interaction analysis. Knowledge of genomics, bioinformatics, or next-generation sequencing approaches. Knowledge of grant writing and proposal development
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the last five years) or soon-to-be completed Ph.D. in Chemical Engineering, Materials Science, Mechanical Engineering, Chemistry, Nuclear Engineering, or related field. Knowledge and experience in
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will participate in grant-funded research aimed at: · Characterizing collateral RNA cleavage by diverse Cas13 homologs and determining their RNA substrate preferences and mechanisms of activation
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) enzyme biochemistry and mechanism. This position will utilize protein overexpression, anaerobic protein purification techniques, and a variety of bioanalytical, spectroscopic, and structural approaches
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. Certifications/Licenses Required Knowledge, Skills, and Abilities o Professional knowledge in mechanical engineering, electrical engineering, civil engineering, architecture, urban planning, regulatory economics
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scientific discovery. Research areas include solid-state batteries with lithium and sodium metal anodes, as well as the morphology evolution of materials coupled with electrochemical and mechanical phenomena
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, and molecular diagnostics. Knowledge of entomopathogenic fungi and microbial insecticides and different delivery mechanisms. Knowledge of molecular trophic interaction analysis. Knowledge of genomics
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deformation, strengthening, and failure in advanced alloys. The research will focus on integrating microstructure characterization, in situ diffraction techniques, and mechanical testing to uncover processing
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) enzyme biochemistry and mechanism. Under the direction of faculty leadership, this position will perform laboratory research using protein overexpression, anaerobic protein purification techniques