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at the Fields Institute from January 1 - June 30, 2028. More information on the program will be posted here as it becomes available: https://www.fields.utoronto.ca/activities/27-28/dynamics
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Shrum building and the Biomedical Research Centre (BRC). For more information about the School of Biomedical Engineering, please visit https://www.bme.ubc.ca/ . The position will require the incumbent
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level of training and experience. It will be in accordance with the University's compensation guidelines. This position is covered by the AMURE collective agreement: https://www.mcgill.ca/hr/files/hr
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Academic Job Category Faculty Non Bargaining Job Title Postdoctoral Fellow - Protein Engineering and Biomaterials Department Research | Li Lab | Department of Chemistry | Faculty of Science
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Montreal. The postdoctoral researcher will be leading research on a key theme of the project, concerning the intersection of health and transport as it relates to the REM. Among other things, the incumbent
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scientific and data quality standards for AI-generated outputs, ensuring contributions meet clinical and technical standards. • Help define data engineering practices, testing strategies, and quality standards
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | 11 days ago
, purpose-driven community, that celebrated 200 years of academic excellence in 2018. Job Summary The Thompson synthetic chemistry research group at Dalhousie University develops and evaluates technologies
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University of British Columbia Department of Surgery | Northern British Columbia Fort Nelson, British Columbia | Canada | about 2 months ago
Work Performed Projects will be tailored to the successful applicant's scientific interests and career goals. Current areas of research include: Engineering next-generation Tregs using synthetic
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, speech-language pathology, accessibility, and health technology. The successful candidate will work with a research team developing AI-based tools to improve communication access for individuals with
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encephalitis, and related neurological disorders. The project combines human induced pluripotent stem cell (hiPSC) technology, brain organoids, genome engineering, advanced imaging, systems immunology, and high