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detection and screening technologies (e.g. X-ray scanners and chemical/biological agent detectors in the aviation, ports and borders sectors). Alongside the design and manufacture of cutting-edge threat
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are typically based on baryonic content (e.g., X-ray emission from intra-cluster gas, the Sunyaev-Zel'dovich effect in the millimeter regime, or optical emission from galaxies), a catalogue derived from
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deposition new types of ultra-thin magnetic films. The growth will be performed either by PLD or off-axis sputtering. structural characterizations including X-ray diffraction, reciprocal space mapping, AFM
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of stabilization or leaching of trace metals in slag. To this end, various chemical, mineralogical, and structural characterization techniques will be used: LA-ICP-MS, HT-XRD, XRF, X-ray absorption spectroscopy
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the security of the clinical facility (Ensure all doors are locked in key areas at end of day) Monitor/supervise student clinicians during their clinical rotation in this area X-ray Area: Maintain quarterly
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, offering new opportunities to develop novel X-ray imaging techniques that were not possible before. This project aims to develop and demonstrate a novel X-ray imaging technique based on scattering to explore
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through chemical analyses (ICP-AES and ICP-MS), physicochemical analyses (DLS, zeta potential), structural analyses (XRD, XANES, EXAFS), X-ray imaging (2D and 3D), microbial community analyses, and
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science. Experience with experimental techniques, such as: High-energy milling or fracture stimulation. Geochemical assays for H₂, H₂O₂ and redox states (e.g., X-ray Photoelectron Spectroscopy, zeta
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understanding of the educational content and his/her involvement in the plan of care, and document in patient record. Prepare patients for x-rays, tests and procedures. Take electrocardiograms. Remove sutures
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x-ray diffraction and materials research facilities and instrumentation in the Departments of Chemistry and Earth and Environmental Sciences (Departments), including, but not limited to, Single