425 computer-security "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" uni jobs at Nature Careers in United States
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institution. Maintain regular and predictable attendance. Minimum Education and/or Training: High school diploma/GED required Minimum Experience: 6 months of security-related experience (e.g., security program
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bioinformatics and genomics is not required; we're targeting talented software engineers who want to expand into the fields of bioinformatics and genomics (visit https://learngenomics.dev/ to learn more about
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of this enterprise is the Center for Pediatric Neurological Disease Research (CPNDR) [ https://www.stjude.org/research/initiatives/pediatric-translational-neuroscience-initiative.html ]. The CPNDR is
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Job Description The Program Coordinator - St. Jude Global Programs assists in designing, implementing, and overseeing projects and initiatives within and for the Department of Global Pediatric
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Job Description The Research Program Coordinator is responsible for coordinating program management activities by performing tasks related to data tracking, analysis, and implementation of results
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of computational, synthetic, and translational immunology are especially encouraged to apply. Qualifications • Ph.D., M.D., or equivalent degree in immunology, bioengineering, computational biology, or a related
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details about the program are available here: https://arcinstitute.org/programs/science-fellows Additional details about this year's search are available here: https://arcinstitute.org/programs/search
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, Physical Oceanography, Applied and Computational Mathematics, Physics, Engineering, or a related field at the time of the appointment; Strong programming and numerical skills; Experience with high
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talent. Springer Nature was awarded Diversity Team of the Year at the 2022 British Diversity Awards. Find out more about our DEI work here https://group.springernature.com/gp/group/taking-responsibility
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computational analysis, deep learning, and calcium imaging–based approaches. We work primarily with the model system C. elegans and apply both computational and experimental methods to uncover fundamental