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. https://www.ars.usda.gov/pacific-west-area/wapato-wa/temperate-tree-fruit-and-vegetable-research/ Research Project: The selected participant will engage in cutting-edge research focusing on molecular
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300 species. https://www.ars.usda.gov/northeast-area/geneva-ny/plant-genetic-resources-unit-pgru/docs/about-pgru/ Research Project: Participants will have the opportunity to explore genetic variation
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Objectives: The participant will develop an understanding of cotton fibers as a textile material through chemical transformations and mechanical construction taking into consideration fiber morphology and
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and to identify the cell signaling mechanisms responsible for these effects using in vivo (murine model of nonalcoholic fatty liver disease) and in vitro methods. Learning Objectives: The selected
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of the Airman Systems Directorate (RH) and the United States Air Force School of Aerospace Medicine (USAFSAM). For more information about the Air Force Research Laboratory, please visit https://afresearchlab.com
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, psychology, and immunology. For more information about the MRICD, please visit https://usamricd.health.mil. For more information about this project, please contact: Dr. Magda Bahcall; magda.bahcall.civ
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, neuroscience, toxicology, physiology, psychology, and immunology. For more information about the MRICD, please visit https://usamricd.health.mil. For more information about this project, please contact: Dr
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underlying molecular mechanisms through marker-trait and functional analyses and integrate desirable alleles into pre-breeding lines via molecular markers to support the process of continuous germplasm
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pursues disruptive qubit research, innovative workforce development programs, and deep, collaborative partnerships to tackle some of the hardest open problems in quantum information science and technology
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, and to understand the molecular mechanisms through which these microbes act to improve agricultural outcomes. Through a variety of techniques including microbiome profiling, host RNA sequencing, plant