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interdisciplinary research team at Indiana University, Bloomington. The successful candidate will contribute to cutting-edge research on the development of open- and closed-shell organic semiconducting materials
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discovery to identify children at risk for developing kidney disease and to guide personalized treatment strategies. By leveraging advanced technologies in genomics, proteomics, and metabolomics, our goal is
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embryos, particularly at early stages of development, is highly desirable. Experience with cell culture, immunofluorescence or in situ hybridization would be considered a plus. Department Contact for
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through the collaborative development, production, and characterization of AAV vectors for experimental applications. The successful candidate will work as an integral member of a team focused on designing
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, and Engineering in Bloomington, Indiana, USA, invites applications for a postdoctoral position focused on developing cutting-edge optical imaging systems using advanced light manipulation techniques
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of synthetic inorganic and organic ligand chemistry, as well as molecule preparation and purification. Nanomaterial design to develop systems for catalysis is a plus but not required. Motivated
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use a deep understanding of synthetic nanomaterial design to develop systems for bio- and chemical transformations/catalysis. Motivated applicants with a Ph.D. in any area of chemistry will be
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ecosystems to microbiology and developmental biology, from evolution to cell biology, from molecular biology to systems biology, bioinformatics, and genomics. It is always an exciting time for Biology
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Biomedical Engineering & Informatics, and Associate Director for AI Research at the Center for Computational Biology and Bioinformatics. Dr. Duren’s research focuses on development of computational methods and
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develop the synthesis of new main-group heterocycles, macrocycles, and polymers as functional materials. Goals of projects in the Wentz lab are to gain a fundamental understanding of how electronic