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characterization (e.g., XRD, SEM/EDX, transport measurements) Modeling and simulation of thermoelectric devices (e.g., COMSOL, ANSYS) Microfabrication and evaluation of micro thermoelectric devices Your profile
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characterization tools (e.g., SEM, AFM, TEM, thermal analysis). Maintain rigorous experimental records and contribute high-quality datasets for internal collaboration. Communicate research results through peer
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Research Associate: Validation of Functional Ceramics and Glasses using AI based Materials Discovery
of dielectric ceramics and glasses, electrical characterisation using impedance spectroscopy, P-E loops and MW measurements, scanning electron microscopy (SEM), X-ray diffraction. Main duties and responsibilities
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using microscopy and materials characterization tools (e.g., SEM, AFM, TEM, thermal analysis). Maintain rigorous experimental records and contribute high-quality datasets for internal collaboration
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/10.14379/iodp.proc.399.104.2025 ), combined with numerical modelling of PHHSs. About the role You will combine quantitative petrographic and petrological techniques (SEM-QEDS) with state-of-the-art, in-situ
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, - prior knowledge and practice in scientific research work in the field of experimental physics and/or materials physics, - work experience with experimental techniques: SEM, ALD, XPS, UV-vis, Raman, - well
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developing system requirements and performance objectives for bids, quotes, etc. Basic understanding of surface science methods and instruments (SEM-EDS, XPS, Auger, SIMS, FTIR, etc.) and their utility. 3-5
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fabrication by sputtering (e.g., magnetron sputtering; thin-film deposition workflows). • Materials characterization methods (morphology, structure, composition), e.g., SEM/EDS, XRD, profilometry, IBA, etc
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in tissue engineering; knowledge of how to operate key equipment typically used in biomaterials engineering, such as a scanning electron microscope (SEM), a tensile testing machine, and a goniometer
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measurement) and materials characterization (e.g., SEM, spectroscopy). Solid understanding of heat transfer mechanisms, including conduction, convection, and radiation, preferably in soft or porous materials