117 phd-computer-science-fully-funded Postdoctoral positions at University of Washington
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genomics, with expanded interests in computational biology, functional genomics, and neuroscience. Example projects within the university and with external partners: • Noncoding Variation in
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Position Overview School / Campus / College: College of Arts and Sciences Organization: Speech & Hearing Sciences Title: Postdoctoral Scholar - Behavioral and Neural Development of Social
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(including Crohn’s disease and ulcerative colitis) using molecular and cell biology, multi-omics technologies, murine models, and human tissues. We currently have three major focuses: 1) Innate lymphoid cells
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, particularly in the areas of the actin cytoskeleton and membrane trafficking. • Utilize quantitative, biophysical, and computational approaches to cell biology, including fluorescence imaging, image analysis
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molecular biology techniques is desired: RT-PCR, CRISPR or shRNA gene knock-down strategies, immunohistochemistry, ELISA, cell culture, drug toxicity assays. Candidates need to be highly-motivated, organized
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research laboratory uses stem cells for the study and treatment of diabetes. We have a wide diversity of projects involving stem cells differentiation, genetic engineering with CRISPR, disease modeling
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wage determination. Qualifications Applicants must have a Ph.D. in Statistics, Computer Science, Economics, Sociology, or related field. Instructions Applicants should submit a cover letter, a statement
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to interface with and participate in research projects in partner laboratories within the Center for Industrial and Medical Ultrasound. Core Duties: Apply advanced engineering techniques to rapidly fabricate
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the Required Qualifications section. Skills: Collaboration, Computational Biology, Data Analysis, Data Interpretations, Experimentation, Laboratory Operations, Laboratory Techniques, Researching, Results
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Lab is focused on understanding the homeostasis of lung vascular biology and pathogenesis of cardiopulmonary diseases with the goals of 1) understanding underlying mechanisms of pulmonary vascular