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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . To develop novel inertial microfluidics and impedance-based cell sorter. To develop novel label-free CQAs based
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our partners (F. Mallogi, K. Perez-Torralla, CEA Saclay) for the development of the microfluidic chip, work on the integration of primary patient cells and on the validation of the device based
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the project “Novel unified multiscale predictive tool for gaseous microfluidic flows in Knudsen Pumps”, reference 2023.13693.PEX, funded by national funds (OE) through FCT, I.P., under the following conditions
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validation, prototype refinement, and preparation for commercialisation via spin-out or licensing. The role will combine advanced analytical chemistry, microfluidic systems development, and applied
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multidisciplinary work. Experimental work will include microbiology, surface biofunctionalization, microfluidics and microscopy. Previous experience in one of these fields will be appreciated, good experimental
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antimicrobial strategies, lipid membrane platforms, membrane-active compounds, antibacterial and antiviral applications, plant-based bio-material applications, etc. For more details, please view https
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chemistry, microfluidic systems development, and applied environmental testing with translational activity including prototype deployment, stakeholder engagement, and regulatory validation support. The post
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with real-world samples, and effectively integrating them with microfluidics as a standalone device. This is a great opportunity to learn new skills, contribute to assay development, and intellectually
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fellowship: New microfluidic tools for rapid phage therapy testing and manufacturing Within the remit of the ERA Chair project REACTORS 5.0 “Sustainable REACTOR and microreactor designS for boosting green and
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fellowship: Novel microfluidics and machine learning tools for unravelling environmental microbiomes Within the remit of the ERA Chair project REACTORS 5.0 “Sustainable REACTOR and microreactor designS