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of bioactive lipids from the gut microbiome can influence mammalian phenotypes. The Johnson lab uses genetic, genomic, and liquid chromatography-mass spectrometry (LC-MS) based-lipidomic approaches to understand
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including but not limited to cell culture, gene interference, mass spectrometry, biochemical assays, testing with pharmacological compounds and mouse models. The postdoc will write manuscripts, mentor
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are set at the NIH rate. Anticipated Division of Time Research: 95%: The successful postdoc will apply various methods including but not limited to cell culture, gene interference, mass spectrometry
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of bioactive lipids from the gut microbiome can influence mammalian phenotypes. The Johnson lab uses genetic, genomic, and liquid chromatography-mass spectrometry (LC-MS) based-lipidomic approaches to understand
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Ecology’s hub for accelerating connections between research, practice, and policy. PSIX is an emerging forward-thinking initiative dedicated to studying and advancing the science of purpose. By connecting
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Cornell University, Cornell Laboratory for Accelerator-based Sciences and Education Position ID: Cornell -CLASSEPhysics -CMSPOSTDOC [#29579] Position Title: Position Location: Ithaca, New York
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program in the areas of computational mechanics and/or heat and mass transfer related to manufacturing. Modeling work can be mechanistic, data-driven or hybrid, and novel applications would be welcome