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anesthetics using electron microscopy technique, perform immunohistochemical and biochemical experiments and/or in vivo behavioral studies using different animals species and models. You will be under guidance
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under controlled conditions and the cracks will be observed by Scanning Electron Microscopy (SEM). 3) The impact of the mechanical damage on the electrode performances will be then assessed using
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prediction, cryo-electron microscopy and single particle analysis, and protein purification and protein-protein interaction screening. You will be supported within two dynamic research groups led by
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research presentations required. Experience in microscopy required. Effective oral and written communication skills. Must be computer literate with proficiency and working knowledge of database and reporting
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limited to): Rheometry; Melt flow index determination; Mechanical testing; Polarised optical microscopy; Surface wettability assessment; Support in the coordination and execution of activities associated
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impedance spectroscopy, thermogravimetry, dilatometry, X-ray diffraction, and scanning electron microscopy—to be used in an electrochemical device for the production of synthetic liquid fuels. 7. Applicable
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/cellular biology lab or related biosciences environment. Responsibilities: Perform research experiments including animal procedures, cell culture, Western blotting, PCR, flow cytometry, and microscopy
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approach takes advantage of mouse and primate models of experimental glaucoma, biolistic transfection of cells, high-resolution microscopy, electrophysiology, and molecular and cellular biology. We are also
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UBC Faculties of Medicine and Science, and Vancouver Coastal Health Research Institute. The research laboratory of BioAugmentative Interfaces Lab (https://bioauglab.med.ubc.ca/) at ICORD is led by Dr
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and molecular genetics as well as hands-on experience with cloning, live-cell fluorescence microscopy, image analysis, and sample preparation for sequencing and multi-omics analyses. The main model