42 parallel-processing-bioinformatics Postdoctoral positions at Nature Careers in United States
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7,400 primary and specialty care physicians; 13 joint-venture outpatient surgery centers throughout the five boroughs of New York City, Westchester, Long Island, and Florida; and more than 30 affiliated
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are: Identify and validate pathophysiological changes relevant to anhedonia. Develop models with high construct validity. Identify new targets to treat anhedonia. This may involve multi-modal approaches combining
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veteran status. If you are unable to use our online application process due to an impairment or disability, please contact 814-865-1473. The Pennsylvania State University is committed to and accountable
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for candidates who aim for an academic career. We will walk you through the process of transitioning from a postdoc to an independent researcher. Our postdocs have been successful in their career development
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federal civil rights laws. We do not discriminate, exclude, or treat individuals differently based on race, color, national origin, age, religion, disability, sex, sexual orientation, gender, veteran status
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Postdoctoral Research Associate - Training in Pediatric Cancer Survivorship Outcomes and Interventio
, computational biology, psychology and neuropsychology, neuroscience, exercise physiology, oncology, pharmacology, radiology, surgery and biostatistics. St. Jude leads two of the world's largest pediatric
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to independently design, execute, and troubleshoot experiments Strong computational skills for processing complex cryo-EM datasets Enthusiasm and demonstrated ability to rapidly learn new techniques Prior training
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epigenetic processes in human cancers. We develop novel chemical probes, engineered enzymes, and synthetic chromatin platforms to dissect and manipulate chromatin-templated processes. This position aims
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of sequence-encoded grammars, and these are often tied to their subcellular localization and the biological processes they are involved in. We have extensively characterized how the molecular grammar of prion
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hypothesize that key developmental processes, such as trabeculation, compaction, vascularization, and postnatal hypertrophy, must be recapitulated to ultimately generate a mature cardiac organoid model