118 postdoc-computational-fluid-dynamics Postdoctoral research jobs at University of Washington
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, graduate students and undergraduate students whose current activities include fundamental and applied aspects of quantum information science, simulations of dynamics and thermalization in quantum field
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skills to join our effort and generate novel insights of neurodegeneration with this unique dataset, while working in a highly dynamic multidisciplinary and collaborative environment. Will join a large
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Position Summary The Foltz lab works at the intersection of translational immunology and computational biology. We study mechanisms of response and resistance to natural killer (NK) cell therapies
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Position Summary Functional Genomics of circular RNAs in Alzheimer's Disease. The Cruchaga Lab, member of the NeuroGenomics and Informatics Center, is recruiting a motivated, creative, self-driven
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conditions, and brain tissue microstructure and functioning. The successful candidate will be working within a multi-disciplinary team of MRI physicists, computer scientists, radiologists, neuroscientists, and
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about exploring and applying new statistical, computational, or machine learning techniques to astronomical data sets, and extending current methodology to be applicable in the era of big data. Looking
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the University of Washington Labor Relations website https://hr.uw.edu/labor/academic-and-student-unions/uaw-postdocs/uaw-postdoc-contract We are seeking a creative, innovative, and collaborative individual
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Position Summary The Ghanbarpour Laboratory, located in the Department of Biochemistry and Molecular Biophysics at WashU Medicine, is now recruiting for a highly motivated Postdoc. Our research is
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pulmonary vascular endothelial cells contributes to pulmonary vascular remodeling. Our current research program includes investigations into the role of hyperactive mTOR (mechanistic target of rapamycin) in
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-built behavioral assays to map the neural dynamics of social behavior. Our comprehensive approach maps intricate neural circuits from the cellular level to neural circuits and behavior, thereby uncovering