17 molecular-dynamics-simulation Postdoctoral positions at SUNY University at Buffalo
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of lipid biology, cell death, and evolutionary genomics. The project, primarily led by the Atilla Laboratory (Department of Chemistry ), investigates how lipid signaling and membrane dynamics regulate
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advance our understanding of the gut microbiota at the molecular level. We are interested in studying microbial functions important for bacteria to colonize and survive in the gut habitat. Potential
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of Biology Molecular biology or bioinformatics skills Preferred Qualifications Ph.D. or M.D./Ph.D. in molecular biology or computational biology Demonstrated ability to work independently and collaboratively
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therapeutically targeted. The postdoctoral associates will have the opportunity to work in an internationally collaborative and supportive environment, gain expertise in molecular virology, immunology and RNA
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(or equivalent) in any relevant field of Biology Molecular biology or bioinformatics skills Preferred Qualifications Ph.D. or M.D./Ph.D. in Neuroscience or Genomics Demonstrated ability to work independently and
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protein level structural responses to low-dose radiation. The position is intended for a motivated individual with a background in a molecular biology with additional experience or interest in structural
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Qualifications Ph.D. in Molecular Biology, Biochemistry, Genetics, or a related field. Experience with cell culture and genomic approaches. Preferred Qualifications Strong background in transcriptional regulation
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related discipline. Preferred Qualifications Cardiac electrophysiology, Animal handling and surgery (rodents, rabbits, pigs), Donor human hearts, Optical and Electrical mapping, Molecular imaging (western
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Detail Information Position Summary The Department of Epidemiology and Environmental Health (EEH) invites applications for three Postdoctoral Associate positions to join our dynamic team of faculty and
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dynamics and charge transfer across the interfaces. Job duties will include, but are not limited to: Assemble and characterize opto-electronic devices with low dimensional hybrid single crystals Build