57 modeling-and-simulation-"UNIVERSITY-OF-SOUTHAMPTON" Postdoctoral positions at University of Washington
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Postdoctoral Scholar to conduct qualitative modeling research in the Puget Sound region of Washington State, USA. Postdoctoral scholars are represented by UAW 4121 and are subject to the collective bargaining
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: Using biogeochemical evolutionary models to simulate lifeless and inhabited worlds, and Developing disequilibrium-, redox-, and information-based metrics to understand and quantify the influence of life
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to join our interdisciplinary research group. The successful candidate will conduct original research in biophysical modeling and live-cell fluorescence microscopy, focusing on the actin cytoskeleton’s role
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models to simulate lifeless and inhabited worlds, and Developing disequilibrium-, redox-, and information-based metrics to understand and quantify the influence of life on planetary environments
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Position Overview School / Campus / College: University of Washington, Tacoma Organization: School of Engineering and Technology Title: Postdoctoral Scholar – Qualitative Modeling of the Puget Sound
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: Using biogeochemical evolutionary models to simulate lifeless and inhabited worlds, and Developing disequilibrium-, redox-, and information-based metrics to understand and quantify the influence of life
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scholar will be expected to be involved in research efforts in at least one of the following: transportation data analytics, highway safety, transportation equity and sustainability, traffic simulation
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applicant will work closely with industry sponsors who will help to guide the project. The Elbert lab and the industry partner are interested in developing mechanistic, predictive models of neurodegenerative
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resolution. The studies will include using cell culture and organoid models to provide mechanistic insight of murine models of lung injury. We seek candidates with experience in murine tissue collection, cell
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signaling pathways that promote lung injury resolution. The studies will include using cell culture and organoid models to provide mechanistic insight of murine models of lung injury. We seek candidates with