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Literacy, Data Analysis, Immunohistochemistry (IHC), Molecular Biology, Molecular Cloning, Mouse Models Questions For frequently asked questions about the application process, please refer to our External
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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
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governing principles of brain dynamics from often high-dimensional physiological and behavioral datasets, thus placing the research focus at the interface of Dynamical Systems theory, Machine Learning, and
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. Techniques include flow cytometry, immune cell transfers, cloning and molecular biology, biochemistry, cell/tissue culture, fluorescence and confocal microscopy, and analysis of RNAseq or other data sets
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databases, design new programs for the analyses, write new support programs/scripts, and perform debugging procedures on database scripts and programs. The successful candidate will join a dynamic
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: Ph.D. or M.D./Ph.D. Strong record of research experience and productivity demonstrated by peer-reviewed publications. Skilled in standard techniques such as cell culture, molecular cloning, protein
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to address open scientific questions. The candidate will join the Computational Plasma Dynamics Group at the University of Washington and have the opportunity to engage with the broader plasma physics, fusion