30 algorithm-development-"Prof"-"Prof"-"Washington-University-in-St" Postdoctoral positions at University of Florida in United States
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unravel the complex relationships between land use changes and fire regimes over the past 60 years. The successful candidate will lead efforts to: Develop advanced deep learning algorithms for classifying
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) Intensive Support (Suicide Prevention and Intervention) , (3) Alcohol and Other Drugs Prevention and Intervention , Program development opportunities may be available, working alongside the program
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Investigator) and collaborators to develop new research directions and contribute to the lab’s mission of understanding metabolic adaptation, stem cell function, and chronic disease pathogenesis. The expected
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college. Duties and Responsibilities Train and participate in a growing clinical and research program in improving care for pediatric feeding disorders and individuals with neurodevelopmental disorders in
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. This is combined with rigorous mentoring to create an individualized development plan to achieve the career goals of each team member The ideal candidate will be highly motivated with a strong work ethic
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Description: Conduct independent and collaborative research on microbial metabolism and genetics Utilize molecular biology, biochemistry, and omics approaches to study oral streptococci Analyze data, prepare
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other dedicated employees focused on developing knowledge in agricultural, human, and natural resources, and to make that knowledge accessible to sustain and enhance the quality of human life. Some key
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influence placental physiology, fetal development and long-term health outcomes. The successful candidate will join a dedicated research team conducting translational studies using animal models, human tissue
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, mathematics or related majors Job Description: The Postdoctoral Researcher will play a key role in developing and applying cutting-edge AI methods to analyze large-scale clinical datasets, including electronic
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projects for this position include: (1) development of physiologically based pharmacokinetic (PBPK) and quantitative structure-activity relationship (QSAR) models of drugs, environmental chemicals, and