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precision medicine tools for these conditions. We have a track record of training outstanding postdocs who go on to have successful high impact careers in academia and the private sector. This is an
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for an energetic and creative individual to help discover and characterize functional RNA elements within the human virome, the trillions of viruses that reside in the human body. This project builds on our recent
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Extract relationships between the entities discovered and form an internal knowledge graph and timeline of events across the full corpus Build, potentially using AI code assistants, a user interface through
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or federal grants. ● Assist in building a supportive lab culture, including mentoring graduate and undergraduate trainees Required Qualifications • PhD, MD/PhD, or equivalent doctoral degree completed by
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result. You will also be encouraged to develop your own questions. Postdocs in this group are expected to articulate research questions of clinical and population health importance, design studies, write
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other techniques to ensure the records are well connected and well described. Alignment of natural history datasets at the data rather than metadata level Using the LUX paradigm and code to construct a
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Postdoctoral Associate | Mitochondrial Genomics | Lake Lab — Yale University, Department of Genetics
We are seeking a motivated postdoc to join our growing team in the Yale University Department of Genetics. Our lab uses experimental and computational methods to investigate cellular and health
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resilience for mental health outcomes. This is an opportunity for scientists who want to do more than apply established tools to familiar questions. The lab is interested in building a deeper framework for
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salary of no less than $68,500.00. Information on compensation and benefits for postdoctoral appointments can be found at https://postdocs.yale.edu/postdocs/being-a-postdoc-at-yale/benefits-summary
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. Building on this platform, we combine cell biology, biochemistry, CRISPR-based approaches, organelle isolation, metabolomics and proteomics, mouse genetics, and disease models to discover principles of ER