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is on a fixed term basis till the end of February 2027. This position focuses on the development of innovative microfluidic-based sensors for continuous, in-situ chemical and biochemical analysis
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genomics and microfluidics. The successful candidate will work with Dr. Klein to develop an independent research project within the scope of the lab's research focus. In addition to carrying out research
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statistical physics, biophysics, or in experimental method development including genomics and microfluidics. The successful candidate will work with Dr. Klein to develop an independent research project within
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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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microscopy - Perform single particle detection and spectroscopy in a microfluidic setup - Perform different microscopies including scanning electron microscopy (SEM), and optical microscopy (OM
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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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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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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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chemistry, microfluidic systems development, and applied environmental testing with translational activity including prototype deployment, stakeholder engagement, and regulatory validation support. The post