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for high-aspect-ratio vertical interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and
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interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and sustainability: less material waste, better energy
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fluent in English. The following work or research experience will be an advantage: experience with cementitious materials, XRD with Rietveld analysis, SEM, TG, DSC, micro-CT, particle size analysis
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knowledge of building materials and be fluent in English. The following work or research experience will be an advantage: experience with cementitious materials, XRD with Rietveld analysis, SEM, TG, DSC
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immobilization, support development and functionalization and related analytical techniques including TEM, SEM good knowledge (reading, speaking, writing) of English and Romanian; a good understanding of
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application! This recruitment is linked to the Impact Innovation program Swedish Metals and Minerals – an initiative of Energimyndigheten, Formas and Vinnova. Read more: https://impactinnovation.se/program
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sustainable technologies. For more details, please view: https://www.ntu.edu.sg/eee The LUMINOUS! Centre of Excellence for Semiconductor Lighting and Displays at NTU is seeking a Research Assistant
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coalescence under thermomechanical loading using scanning electron microscopy (SEM) and X-ray microtomography. Ultimately, the validated virtual laboratory will provide reliable predictive indicators and
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identification of exchange networks from local to extra-regional scales. The doctoral candidate is expected to conduct metallographic examinations and chemical characterizations (primarily SEM-EDS and LA-ICP-MS
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(PIMS), from the synthesis of reactive polymer to the morphological characterisation by microscopy and scattering methods (AFM, SEM, SAXS); with the essential task of implementing the formulated resins