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The University of British Columbia (UBC) | Vancouver UBC, British Columbia | Canada | about 7 hours ago
state-of-the-art aberration-corrected Nion HERMES 200 scanning transmission electron microscope (STEM) optimized for both atomic level imaging and high energy and momentum resolved electron energy loss
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opportunities for students, staff, faculty and community members across the three campuses. In achieving this vision, the Faculty is guided by values of integrity, respect, equity and diversity https
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aberration-corrected Nion HERMES 200 scanning transmission electron microscope (STEM) optimized for both atomic level imaging and high energy and momentum resolved electron energy loss spectroscopy (EELS
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the management and operation of a state-of-the-art aberration-corrected Nion HERMES 200 scanning transmission electron microscope (STEM) optimized for both atomic level imaging and high energy and momentum
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communication of monthly and year end reporting on service area budgets Operational Effectiveness In collaboration with USask Central Procurement services, ensure optimization and efficiency in resource
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | about 14 hours ago
requirements, and procedures. Recommend and implement strategic solutions to improve efficiency, data integrity, and system integration. Provide consultative advice to staff on optimizing business processes
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engineering research, education and translation. For more information about the School of Biomedical Engineering, please visit https://www.sbme.ubc.ca/ . The Yachie lab (https://yachie-lab.org/ ) develops next
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ABIF can be found at: http://www.mcgill.ca/abif. Primary Responsibilities 1. Technical Development & Innovation Lead and document quality control (QC) workflows for ABIF imaging systems, including
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the following is desired: - Agentic and sequential decision-making for autonomous experimentation, including active learning and optimal experimental design - Generative and probabilistic modeling
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matrices Design multi-material printed architectures with localized sensing zones Optimize 3D printing processes (DIW, extrusion) and morphology control Investigate electro-mechanical, piezoresistive, and