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the development of therapeutic strategies to promote neurological recovery. The successful candidate will use a combination of in vivo and in vitro approaches, including animal models, molecular and
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the development of therapeutic strategies to promote neurological recovery. The successful candidate will use a combination of in vivo and in vitro approaches, including animal models, molecular and
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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to work in a highly collaborative environment with access to state-of-the-art chemistry, proteomics, immunology, and animal research cores while contributing to projects with strong publication, patent, and
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/faculty/51983/richer-martin and https://www.mjricherlab.com/ for more information. Applicants should have recently completed PhD training, have a solid understanding of immunological concepts and a
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, applications of effective field theories to nuclear and hadronic systems, and formal developments in scattering theory or lattice field theory. The successful candidate will also be encouraged to pursue
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of quantum algorithms for hybrid quantum simulators. Applicants should have a PhD in Physics, Chemistry, Computer Science, or a closely related field. To apply, a CV, a brief statement of research interests
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/faculty/51983/richer-martin and https://www.mjricherlab.com/ for more information. Applicants should have recently completed PhD training, have a solid understanding of immunological concepts and a
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Information about the Indiana University School of Medicine is available at: https://medicine.iu.edu Basic Qualifications Minimum Education: PhD in relevant field required (e.g., biomedical sciences, cancer