51 molecular-modeling-or-molecular-dynamic-simulation Postdoctoral positions at University of Washington in United States
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) biomaterials, soft lithography, and hydrogel synthesis, and (c) cell culture and molecular cell biology assays. The successful candidate is expected to publish papers in prestigious peer-reviewed journals and
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), identifying specific genomic variants and their relationship to clinical manifestations, and understanding the molecular mechanisms behind these rare disorders. • Methods Development: Developing novel
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Associate position to play an active role in our ongoing studies of tumor immunology and T cell biology. The Peng laboratory has been performing translational studies to dissect molecular mechanisms
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Cultures, Cloning, Flow Cytometry, Microscopies, Molecular Biology Techniques, Mouse Models Questions For frequently asked questions about the application process, please refer to our External Applicant FAQ
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evolutionary genetics/genomics, molecular laboratory techniques, and field-based research. Job Description Primary Duties & Responsibilities: Information on being a postdoc at WashU in St. Louis can be found
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combines human samples, mouse models, and in vitro culture system, and leverages single-cell technology, bioinformatic analysis, and mechanistic interrogations to revolutionize our understanding of gut
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Position Summary The Cooper lab at WashU is seeking a post-doctoral research fellow with a strong background in wet-lab immunology to work on projects related to understanding the molecular
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, single-cell multiomics, tissue engineering, and animal models. Our current research primarily focuses on four key areas: 1) Developing robust, chemically defined differentiation protocols to generate
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, predictive models of neurodegenerative disease with a focus on Alzheimer's Disease. Computational models will be developed that utilize data obtained from a wide range of experiments, from basic biochemical
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, single-cell multiomics, tissue engineering, and animal models. Our current research primarily focuses on four key areas: 1) Developing robust, chemically defined differentiation protocols to generate