88 phd-in-computational-mechanics-"Prof"-"Prof" Postdoctoral positions at University of Washington
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of GI diseases to continue our work in functionally characterizing the impact of immune cells including ILCs in IBD. Our research program provides a highly collaborative and supportive training
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Position Summary A postdoctoral position is open immediately in the laboratory of Dr. Li Ding at WashU School of Medicine in St. Louis, MO. We are looking for a highly motivated computational
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, computational genomics, functional assays, and integrated data analysis. We are seeking a highly motivated Postdoctoral Researcher who shares our passion for solving foundational problems in human genetics and
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mechanisms underlying brain aging and age-related neurodegenerative diseases—including Alzheimer’s disease—using advanced spatial biology platforms and translational approaches. Job Description Primary Duties
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scientific papers, and contribute to the overall preparation of research for publication. To assist in the training of PhD and undergraduate students. Working Conditions: This position works in a laboratory
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dedicated to understanding the molecular mechanisms of ATP-dependent AAA+ proteolytic machines in both bacterial systems and human mitochondria, exploring how these complexes form and achieve substrate
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-of-use water filter during use. Methods are expected to use LC-MS/MS and GC-MS workflow. These methods would be applied for laboratory testing and in a pilot testing program. Job Description Primary Duties
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, predictive models of neurodegenerative disease with a focus on Alzheimer's Disease. Computational models will be developed that utilize data obtained from a wide range of experiments, from basic biochemical
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communication skills and the ability to collaborate effectively in a multidisciplinary team Enthusiasm for longitudinal research and working with infant or early childhood populations Applicants should hold a PhD
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lab is dedicated to understanding the mechanical operating principles of the actin cytoskeleton in cellular membrane bending and trafficking. We utilize a blend of biophysical modeling, genome-editing