43 computer-programmer-"https:"-"FEMTO-ST" "https:" "https:" "https:" "https:" "Dr" "Dr" "UCL" Postdoctoral positions at Baylor College of Medicine in United States
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Research Center’s Postdoctoral Training Program (https://www.bcm.edu/research/research-centers/usda-ars-childrens-nutrition-research-center/education/postdoctoral-fellowship-in-childrens-nutrition) . Attends
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applicants should submit a brief application including a letter of interest and CV at BCM Careers for Req 23824. Questions may be directed to Dr. Nancy E. Moran, Postdoctoral Research Training Program Interim
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: Onsite only Location: Houston, TX Salary Range: $82,000 FLSA Status: Exempt Work Schedule: Flexible Summary The Postdoctoral Associate will work in an apprenticeship mode under Dr. Teni Davoudian in
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the Children’s Nutrition Research Center’s Postdoctoral Training Program (https://www.bcm.edu/research/research-centers/usda-ars-childrens-nutrition-research-center/education/postdoctoral-fellowship-in-childrens
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biologically/pharmaceutically important proteins for cancer therapy. In addition, the candidate will receive training in computational drug design, biochemistry and cell biology techniques for testing compound
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to work on Bioinformatics and Computational Biology in Cancer Genomics and Immunology. This position will be involved in the development and/or application of computational approaches to understand
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biologically/pharmaceutically important proteins for the treatment of cancer, stroke and other diseases. In addition, he/she will receive training in computational drug design, biochemistry and cell biology
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important proteins for the treatment of cancer, stroke and other diseases. In addition, he/she will receive training in computational drug design, biochemistry and cell biology techniques for testing compound
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: Exempt Work Schedule: Flexible Summary Dr. Jason Lee in the Department of Molecular and Cellular Biology at Baylor College of Medicine (BCM) is seeking a postdoctoral associate who will work on independent
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research program integrates state-of-the-art genomic and molecular approaches—including ribosome profiling, CLIP-seq, single-cell multiomics, CUT&Tag, and long-read sequencing—to elucidate gene regulatory