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Field
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diffraction, and scanning electron microscopy, in the aim of the project “C2+toNH3 - Síntese eletroquímica sustentável de amoníaco via desidrogenação não oxidativa de biometano a etileno utilizando membranas
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of immunocompromised mice. These lesions can then be studied over time using intravital microscopy to elucidate immune cell interactions, vascularization, and growth. In addition, the effects of drug candidates
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to investigate how biomolecular phase transitions guide higher-order genome structure and influence disease. We combine biochemistry, genomics, cellular engineering, and advanced microscopy to build
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materials – including Raman, atomic force microscopy, and scanning electron microscopy, running reactors such as CSTRs to run various processes. and exfoliation of graphite into graphene using solution-based
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materials characterization (e.g., atomic force microscopy). Key responsibilities include designing and executing experiments, analyzing and interpreting complex datasets, and disseminating results through
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Purpose and Values We want our University to be a place where people can be free to be themselves, no matter what their identity or background. Together, we celebrate difference, value one another and are
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(or will obtain before starting) a PhD from a biomedical research background. Experience in one or more areas of molecular cardiology, microscopy, tissue culture, biochemistry, mouse physiology
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experiments in the wet lab and fly lab and collect data. You will have opportunities to develop your technical skills (microscopy, data collection & analysis), supporting an interdisciplinary team
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independence. This position may also help to lead and direct the work of lower-level research staff. MITM conducts innovative, fundamental, basic, and translational research for HIV/AIDS and neglected tropical
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St. Louis can be found at https://postdoc.wustl.edu/prospective-postdocs-2/ . Trains under the supervision of a faculty mentor including (but not limited to): To foster a passion for scientific