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Field
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involve device design and microfabrication, functional material/interface engineering, and integration and testing of sensors in wearable or implantable formats.
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environments, taking into account parameters such as fibre type, coating, groove geometry, embedding depth, bonding layer and host material. Developing and integrating arrays of Fiber Bragg Grating (FBG) sensors
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around 5%. Existing recycling routes largely downcycle this material into lower-value compounds and do not produce powders with the quality required for advanced manufacturing. This PhD project aims
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lenses. Investigate fluid transport, sensing capabilities, and material behaviour within hydrogel-based microsystems. Publish your research in leading scientific journals and present your work
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optimization aspects to be at the forefront of our accelerated material discovery/process optimization platforms at the NRC Research Facility in Mississauga. The selected candidate would be someone who shares
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at the forefront of our accelerated material discovery/process optimization platforms at the NRC Research Facility in Mississauga. The selected candidate would be someone who shares our core values of Integrity
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, quantum-transport, or magnetotransport measurements. Cryogenic experimental techniques. Spintronics, magnetism, or quantum metrology. Raman spectroscopy or related material-characterization techniques
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ultra-long sequencing protocols Detailed knowledge of cancer genomics and key drivers in cancer development Experience with extracting HMW DNA from cell lines and patient material (i.e. blood, tissue
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generate hypotheses from these large descriptive datasets, which will then be tested rigorously using in vitro assays, in vivo, and ultimately in patient derived material. The overall ambition is to uncover
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candidates into perovskite/silicon tandem cells, device and module fabrication, lifetime testing, and feedback on performance and degradation mechanisms. You will establish a closed-loop workflow from material