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view https://www.ntu.edu.sg/sc3dp/ We are looking for a highly motivated Research Fellow to join our multidisciplinary team aiming to optimize the silica glass additive manufacturing parameters and
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electron microscopy (TEM/STEM) techniques for material characterisation, including high resolution imaging, spectroscopy (e.g., EDX) and diffraction. Demonstrated ability to analyse and interpret complex
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, spectroscopy, and electrical performance measurements. You will work closely with fabrication engineers to translate physical processes into machine learning models, design and train deep learning architectures
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-assisted mass spectrometry and vibrational spectroscopy. Advanced statistical analyses will be applied to link the information on the composition of the species, obtained by mass spectrometry, with
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SPECTROSCOPY (2022) 76, 38-50; ORGANIC PROCESS RESEARCH & DEVELOPMENT (2025) 29, 34-47; (2024), 28, 1917-1928; (2022) 26, 1145−1151; (2021) 25, 1619-1627 (2021) 25, 2052-2059; (2020), 24, 201-206; (2018) 22, 595
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rapid detection of microbial bioburden in biopharmaceutical cleaning validation using a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform. Responsibilities include next-generation sequencing
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application end stations to be used for imaging, absorption/reflection spectroscopy, and other quantum sensing techniques. Practical working knowledge and hands‑on experience with lasers and optics, spanning
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, machine learning, and life cycle assessment, we aim to create sustainable wearable systems to enhance human well-being. For more details, please view https://www.ntu.edu.sg/mse/research . We are seeking a
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of their fundamental properties. Relevant Keywords: advanced material synthesis, ultrafast phenomena in solids, electronic properties, light-matter interactions, optical spectroscopy, quantum transport, and advanced
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well as experience in the standard spectroscopic techniques (e.g. NMR, IR, Mass spectrometry, X-ray crystallography, UV-vis spectroscopy, and photoluminescence spectroscopy) necessary for characterizing new molecules