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., NMR, FTIR, GC–MS, HPLC, BET, SEM/TEM). Knowledge of techno-economic analysis (TEA) or life cycle assessment (LCA) of biomass-derived products. Strong writing skills and prior experience in proposal
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- Petrographic, mineral chemical (SEM, EPMA, LA-ICP-MS) and isotopic analyses (S, O, C, Cl, Sr) - Integration of mineralogical, geochemical and stratigraphic data into a coherent genetic and exploration model
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(UF), membrane distillation (MD), and nanofiltration (NF) processes. The role involves advanced membrane fabrication techniques and a range of membrane characterization methods, such as SEM, EDS, TGA
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materials. You have profound analytical and modelling skills, including e.g. thermogravimetric analysis (TGA), quantitative XRD, SEM-BSE, mercury intrusion porosimetry, 1H-NMR, thermodynamic modelling, … You
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experimental methods, such as XRD, SEM, TGA/DSC, NMR, or synchrotron-based techniques for hydration/carbonation studies is required. Experience with Portland cement, reactive MgO cements, belite-calcium
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using microscopy techniques, including Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The candidate will also map the nanomechanical properties of implant surfaces, assessing
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, retirement plans, and paid time off. To access this tool and learn more about the total value of your benefits, please click on the following link: https://resources.uta.edu/hr/services/records/compensation
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research group (https://www.impellizzerilab.com/ (external link) ) in the Department of Chemistry and Biology (https://www.torontomu.ca/chemistry-biology/ ) within the Faculty of Science at Toronto
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surface structures and microstructures using various spectroscopic and microscopic techniques including but not limited to SEM, XRD, TEM, XPS. • Evaluate the gas sensing properties and performance