38 molecular-modeling-or-molecular-dynamic-simulation Postdoctoral positions at Cornell University in United States
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characteristics of obligate intracellular bacteria, including Ehrlichia and Neorickettsia spp. We use a mouse model to study the disease pathogenesis in the mammalian hosts. We also work with blood samples
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of obligate intracellular bacteria, including Ehrlichia and Neorickettsia spp. We use a mouse model to study the disease pathogenesis in the mammalian hosts. We also work with blood samples collected from
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Cornell University, CALS Molecular Biology and Genetics Position ID: Cornell -CALS Molecular Biology and Genetics -POSTDOC [#30069, WDR-00053216] Position Title: Position Location: Ithaca, New York
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cultures, molecular and genetic analysis, and protein analysis techniques. Additionally, we are looking for candidates who demonstrate proficiency in data collection, rigorous data analysis, and effective
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Biostatistics, Statistics, Computer Science, Public Health, Data Science Cellular and Molecular Biology Chemical and Biomolecular Engineering Civil and Environmental Engineering Coastal Marine Environment Climate
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of biotic heterogeneity in urban environments and the spatial/temporal dynamics of these drivers. This will involve working with pre-existing data collected by the lab, as well as collaborator data and
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of biotic heterogeneity in urban environments and the spatial/temporal dynamics of these drivers. This will involve working with pre-existing data collected by the lab, as well as collaborator data and
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a year with the opportunity to extend based on performance. Anticipated Division of Time: 80% Research, 15% Data Analysis, 5% Writing Requirements: Ph.D. in Biochemistry, Chemistry, Molecular Biology
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molecular mechanisms that mediate in soil-microbe-plant-insect interactions in Ithaca, NY. Specific duties will include: (1) gather and merge existing data from lab and literature; (2) complete experiments
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understanding the drivers of biotic heterogeneity in urban environments and the spatial/temporal dynamics of these drivers. This will involve working with pre-existing data collected by the lab, as