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or research excellence. The Canada Impact+ Research Chairs competition is a one-time initiative to support Canadian institutions in attracting world-leading researchers from abroad. The program aims to address
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Provost s website at: https://carleton.ca/deputyprovost/jobs/academics/ . All appointments are conditional on the approval of the application by the Canada Impact+ Research Chair Program. For more details
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researchers for the Canada Impact+ Research Chairs program . This national initiative is designed to recruit world-leading scholars whose work addresses critical global and national challenges and who
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Program goals. Further information can be found at: https://www.canada.ca/en/impact-plus-chairs/program-details/competition/2026/apply.html#10 . The University of Waterloo has an Indigenous Verification
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partially funded extension. Full program details can be found on the program’s website https://www.canada.ca/en/impact-plus-chairs/program-details/competition/2026/apply.html . USask is committed to providing
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The Canada Impact+ Research Chairs program is a one-time initiative designed to support institutions in attracting world-leading researchers to address critical national and global challenges
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partially funded extension. Full program details can be found on the program’s website https://www.canada.ca/en/impact-plus-chairs/program-details/competition/2026/apply.html . USask is committed to providing
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | 3 months ago
. Applications must demonstrate how the proposed program will advance one or more of the following strategic priority areas: advanced digital technologies (including Artificial Intelligence, quantum and
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The Canada Impact+ Research Chairs program is a one-time initiative designed to support institutions in attracting world-leading researchers to address critical national and global challenges. Only
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facility at INRS-EMT is a state-of-the-art system for investigating dynamical electron interactions in a wide variety of quantum materials upon intense long-wavelength light excitation. TR-ARPES technique