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have a very strong background in materials processing, ideally resin composites forming. Experience with materials characterization (e.g., TEM, SEM, CT, FTIR) is preferred. City: Piscataway State: NJ
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, multiphoton microscopy, SEM),* developing customized loading protocols that mimic physiological conditions.This interdisciplinary project bridges biomechanics, robotics, imaging, and biology, with the goal
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the ability to provide quality research through various analytical methods and instrumentations. The Department is equipped with many state-of-the-art analytical instruments such as SEM, AFM, XRD, UV-Vis, Raman
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-mechanical testing of interfaces in multilayered films across a wide range of temperatures (cryogenic to elevated temperatures) and strain rates using in situ SEM techniques Electron microscopy-based
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• Experience in characterization of functional oxide thin films, including diffraction techniques (XRD, XRR, RSM), electron microscopy (SEM, EDX and TEM), Atomic Force Microscopy (AFM), X-ray photoelectron
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building. In addition, the Palma laboratory hosts a Scanning Probe Microscopy set-up (Bruker dimension icon), and has further access at QMUL to SEM and TEM. About Queen Mary At Queen Mary University
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of a team, are also requirements of the role. About the School This post is within the School of Engineering and Materials Science (SEMS), a large School with 108 academics, over 250 PhD Students and
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, TGA/DSC, SEM, etc.). Hands-on experience in laboratory-scale thermal treatment using muffle furnaces, tubular reactors, or pilot-scale kilns. Proven ability to conduct independent research, analyze data
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at conferences (posters and oral presentations). Produce progress reports. The recruited person will be responsible for structural characterization experiments using FIB/SEM/TEM electron microscopy and chemical
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equipment including clean rooms, several PVD chamber systems for thin film processing, high level of materials analysis facilities such as XRDs, SEMs, FIBs, TEM, APT; as well as in-situ micromechanical