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University of Southern California (USC) | Los Angeles, California | United States | about 2 months ago
frameworks to understand, predict, and control tissue-scale dynamics by integrating mechanistic and data-driven approaches across molecular, cellular, and tissue scales. Particular interest will be given
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Employer https://main.hercjobs.org/jobs/22462826/postdoctoral-researcher-molecular-comparative-pathobiology Return to Search Results
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University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC) | Spain | 2 months ago
next-generation computational approaches to understand, predict, and engineer highly reactive intermediates in enzymatic catalysis. By combining quantum chemistry, molecular dynamics simulations, machine
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, scientific, and regulatory steps required to translate in vitro molecular hits into small animal preclinical evaluation models. Processing and integrating complex transcriptomic, proteomic, and image-based
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communicate your findings through your PhD thesis, presentations at (inter)national conferences and via broader outreach. Where to apply Website https://www.academictransfer.com/en/jobs/363554/phd-position
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Location SAINT LOUIS, MO 63110 Scheduled Hours 40 Position Summary The Feldman Lab is a dynamic and collaborative environment focused on two primary research projects: the pathobiology
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plus; A real team player with the capacity to take initiative and work independently in a dynamic and fast-paced environment; Strong sense of responsibility and a positive, enthusiastic approach to your
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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conducting experiments, analyzing data, coordinating collaborations, and contributing to manuscript and grant preparation. The research combines in vivo mouse models, immunologic profiling, and molecular
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the interrelated processes of viral glycosylation and viral dynamics. Molecular simulations will enable the identification of cryptic pockets in viral proteins that form during the entry process, and the design of