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information about the School of Biomedical Engineering, please visit https://www.sbme.ubc.ca/ . “Mend the Gap: A Transformative Biomaterials Platform for Spinal Cord Repair (Mend the Gap)” is an international
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applicant's relevant experience to the required qualifications. All applications must be submitted online through the UBC Workday Careers website: https://ubc.wd10.myworkdayjobs.com/en-US/ubcfacultyjobs
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lifting of patients/equipment and physical restraint of animals. The work is fast paced with frequent multiple demands and interruptions. Subject to some unpleasant odors, dress code, and traffic pattern
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The University of British Columbia, Department of Cellular & Physiological Sciences | Northern British Columbia Fort Nelson, British Columbia | Canada | 3 months ago
For more than fifty years, the Department of Biochemistry & Molecular Biology (BMB: https://biochem.ubc.ca ) has played an active and important role at UBC and in the greater scientific community. All members
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information about UBC resources and opportunities, please visit http://www.hr.ubc.ca/faculty-staff-resources/. Information about the surrounding community can be found at: https://hr.ubc.ca/careers-and-job
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Faculty Association (https://hr.ubc.ca/working-ubc/faculty-collective-agreement-and-policies ). Eligibility: We are only considering applications from librarians with a maximum of 2 years of professional
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, please visit: https://www.limbnetwork.com/home RESPONSIBILITIES Reporting to Dr. Anthony Cooper, the successful candidate will develop, validate, and deploy ML models to improve clinical decision-making
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applications from members of groups that have been marginalized on any grounds enumerated under the B.C. Human Rights Code, including sex, sexual orientation, gender identity or expression, racialization
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at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell division fidelity
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Research Institute and UBC, investigates how cell division is regulated at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https