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of projects related to research and process development in the field of microbiome, metabolomics, and multi-omics integration in breast cancer epidemiological research. Among the key duties for this position
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closure modeling and/or high performance computing environments (MPI, CUDA) • Expertise in software development and computing tools (C/C++, python, git, parallel computing, etc.) • Experience with deep
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interdisciplinary research group that develops tools, theory, and models for complex systems. We use these tools to document—and fight against—emergent or systemic disparities across society, especially as they
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mechanisms in RNA-guided processes, and to develop novel genome editing applications based on the mechanistic understanding. Research details can be found in our laboratory and departmental web sites
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model APIs, cloud computing environments, and R for additional statistical analysis. For decision support prototype development and evaluation, web-based user interface design, human-computer interaction
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explore their role in addressing the pathogenesis of metabolic diseases. In addition, the candidate will contribute to developing innovative methods for valorizing agro-industrial by-products (e.g., apple
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geographic patterns of dominant water level components over seasonal-to-interannual time scales. Develop methods for quantifying uncertainties in total water level estimations, considering coastal morphology
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), and 3) developing digital 3D atlases and various neuroinformatics tools. We utilize high-resolution 3D imaging tools (e.g., light sheet fluorescent microscopy) and computational approaches to examine
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interpret model outcomes to determine traffic air quality impacts from local to regional scales. Communicate and document research findings. Prepare publications. Perform all other duties as assigned
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development and progression of cancer, including cancer metastasis, cancer metabolic reprogramming and tumor microenvironment. Specific research directions in the lab include: 1) the regulation and function