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Academic Job Category Faculty Non Bargaining Job Title Research Associate – Crystal Growth Department Research | Quantum Matter Institute | Faculty of Science (Andrea Damascelli) Posting End Date
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the Government of Canada: • advanced digital technologies (including artificial intelligence, quantum and cybersecurity); • health, including biotechnology; • clean technology and resource value chains
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digital technologies (including artificial intelligence, quantum and cybersecurity); health, including biotechnology; clean technology and resource value chains; environment, climate resilience and the
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will advance one or more of the following strategic priority areas: advanced digital technologies (including artificial intelligence, quantum and cybersecurity); clean technology and resource value
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outstanding international renowned researchers in one or more of the following strategic priority areas: advanced digital technologies (including artificial intelligence, quantum and cybersecurity); health
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clinical trials, advanced computational methods, neuroimaging, brain stimulation, body-machine interfacing, gamification of therapy, assistive technology design, development and evaluation, outcome measure
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strategic priority areas : advanced digital technologies (including artificial intelligence, quantum and cybersecurity); health, including biotechnology; clean technology and resource value chains
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researchers in one or more of the following strategic priority areas: advanced digital technologies (including artificial intelligence, quantum and cybersecurity); health, including biotechnology; clean
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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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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