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to a deeper understanding of material behaviors, paving the way for the development of next-generation high-performance materials. For more details, please view https://www.ntu.edu.sg/mse/research and
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at: https://dre.pt/application/conteudo/127238533  ; and in accordance with the consolidated version with the changes resulting from the update, approved on December 10, 2025 by the Board of Directors
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techniques, including atomic imaging of surfaces and bulk, nano-probe diffraction (4D-STEM), high-energy-resolution, and valence-level energy-loss spectroscopy, cryogenic microscopy, Lorentz microscopy and
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Chromatograph, Elemental Analyzer, Spectrophotometer, X-ray Diffraction Unit and any other shared teaching/research equipment. Train and oversee student use as needed. Repair and replace parts as needed. Maintain
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etc) Advanced characterization of steels, for example transmission electron microscopy and electron backscatter diffraction (EBSD). Mechanical property testing Materials modelling, with experience
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phonon states in a variety of engineered quantum systems. https://www.oist.jp/research/research-units/qmsu [Work content and job description] -Basic evaluation of substances and materials, including X-ray
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organic pollutants. This would require knowledge in the design and synthesis of porous frameworks, particularly in techniques such as Schlenk line, glove box, powder X-ray diffraction, electron diffraction
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metasurface pixels are patches filled with 2D arrays of scatterers (‘meta-atoms’) precisely tailored for diffractive outcoupling and wavefront shaping at the same time. Each metasurface pixel receives light
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harmful microorganisms. You will actively work with the characterization of various materials using environmental electron microscopy, X-ray diffraction, AFM, and various spectroscopic methods such as NMR
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relevance to extraterrestrial environments and future energy strategies. For more information on this project, see: https://copl.ethz.ch/research/research-projects/2025-saar.html Job description The PhD