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Position Summary: Conduct phase-field modelling of microstructure evolution in two-phase ferritic steel in partnership with Hydro-Québec. Qualifications: PhD in Physics or related field Before applying
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: Develop advanced bioimaging methods and apply them to study the molecular mechanisms that paxillin and its binding partners use to regulate cell migration. Will learn cell biology, advanced microscopy
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the McGill BioPortal. Develop and maintain reproducible analysis pipelines in R, Python, and shell on HPC / Slurm clusters and cloud environments (e.g., DNAnexus, Terra, AWS/GCP). Write first-author
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develop or implement new computational analysis pipelines. The researcher will be expected to work closely with wet-lab scientists to integrate the analysis of omics data and wet-lab experimental results
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manuscripts, reports, knowledge mobilization products, and conference presentations; contributing to grant development (e.g. preparation of large-scale national funding applications). perform administrative and
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mammalian cell culture, and thus our lab emphasizes the importance of translational science. The successful candidate will develop a novel research project using these materials to further our understanding
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work closely with ABIF imaging scientists to advance facility capabilities, support users through training and consultation, and lead innovative technical development projects. More information about the
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are: Create favourable circumstances for the development of a field of research and a community of research on access to justice for OLMCs Produce scientific data for and with the access to justice stakeholders