11 coherent-x-ray-diffraction-tomography Fellowship positions at Nanyang Technological University
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. We are seeking a Senior Research Fellow to develop high-sensitivity, high-resolution perovskite-based X-ray line detectors for security screening, overseeing both scintillator-film (microcolumnar/light
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tomography (APT) and electron microscopes to develop the structure-property-processing relationship of materials. His research pursuits involve the development of advanced workflows to facilitate microscopic
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transmission electron microscopy (TEM), atomic force microscopy (AFM), and X-ray diffraction (XRD), etc. Prepare manuscripts, reports, and presentations for internal discussions and external publication
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The NTU AI-for-X Postdoctoral Fellowship (AI4X-PDF), jointly supported by Nanyang Technological University (NTU) and Singapore’s National Research Foundation (NRF), is a prestigious programme
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ICP RIE, and/or ion milling techniques. To analyse structural, electrical and optical characterisation results, e.g. scanning electron microscopy, X-ray diffraction, transmission electron microscopy
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: Applicants must hold a PhD in Physics or a related discipline, with a strong research track record in quantum information theory or quantum foundations. Expertise in quantum correlations, coherence
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strong publication record, will be advantageous. Strong analytical and synthesis skills, with excellent writing ability and the capacity to integrate complex, multi-project outputs into coherent narratives
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properties Setup insitu testing protocol and analysis methods, especially on coupling the X-ray based catalysts and FTIR/Raman Supervising students Job Requirements: PhD qualification degree in Solid-State
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million over 10 year. IDMxS’ overarching approach is to go beyond the neat simplicity of intermolecular interactions in dilute media and embrace the inherent complexity of biological interactions and dense
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energy input, shows limited catalyst durability, and operates with modest conversion efficiencies (10–20%). Photocatalysis and electrocatalysis, though capable of high conversion (>90%), suffer from