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that arise, and contribute intellectually to the project. For more information, visit: https://wyss.harvard.edu/focus-area/biomimetic-therapeutic-diagnostics/ What you'll do: Perform microfluidic organ-on-chip
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that arise, and contribute intellectually to the project. For more information, visit: https://wyss.harvard.edu/focus-area/biomimetic-therapeutic-diagnostics/ What you'll do: Perform microfluidic organ-on-chip
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(e.g., from the viewpoint of physics, chemistry, or mechanical engineering), programming, machine learning, or equipment automation (including microfluidic systems, robotics and remote sensing
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. Department of Biomedical Engineering at the University of Kentucky has an opening for a postdoctoral scholar research position. https://www.bmesulab.org/ The prospective candidate will be expected
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: Conduct immunocytochemical analysis of secondary thalamic lesions after cortical stroke and assess the properties of oligodendrocytes derived from human skin cells. Work with microfluidic systems currently
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, or military service. The following experience will strengthen your application: Experience with fluidics/microfluidics to explore sample transportation to the sensor. What you will do Develop methods
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: Beijing, Beijing 100190, China [map ] Subject Areas: Biophysics / Biological Physics , microfluidics , Nanopore Science , Single Molecule Spectroscopy Condensed Matter Physics / Condensed Matter Physics
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FCT code 2023.17217.ICDT and DOI https://doi.org/10.54499/2023.17217.ICDT . , funded by COMPETE 2030 by Portugal 2030, and by the European Union, financial support from national funds/OE through
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Please apply here: https://apply.workable.com/ellison-institute-of-technology/j/91F1A5719B/apply/ Led by a world-class faculty of scientists, technologists, policy makers, economists and
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cells flowing in microfluidic chips (Göllner, ACS Applied Materials & Interfaces, 2025). Such a chip format combined with low-cost small laser diodes for excitation of the photoacoustic signals can allow