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fluid dynamics, E-beam and 3D lithography, maskless aligners, micro-printers, etc.) and connecting them to larger mesoscopic features (for example, via CNC micro-milling or laser welding) Example optics
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on tissue regeneration and fibrosis in response to repAMI. Using various imaging techniques, such as confocal laser scanning microscopy and light-sheet fluorescence microscopy, as well as flow cytometric and
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profound expertise in nanotechnology and nanochemistry, specializing in surface phenomena and functional nanomaterials for energy applications. Apply expertise in green chemistry and laser ablation methods
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neutrons and synchrotron, ultrafast and attosecond laser technologies, electron microscopy techniques, or computational materials science are also encouraged. Job Qualifications We are currently seeking 23
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microscopy, confocal laser scanning microscopy, MALDI MSI and flow cytometric analyses, the regulatory mechanisms of these cell types with regard to their interaction with endothelial cells will be elucidated
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is preferred, but not required. R and/or Python programming language basics (preferred, but not required). Light microscopy (e.g. laser-scanning confocal and epifluorescence) Qualitative and
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state-of-the-art research facility including access to all relevant tools (e.g., Light-sheet microscope, laser scanning confocal microscope, high power computing system) and technologies. Benefit from
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and Research Group and Laser Research Group of the Department of Mechanics 1 established by the Huazhong Institute of Technology (now the Huazhong University of Science and Technology) in 1971
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with 7 laser lines and 4 SPADs together with an ensemble FluoTime300 instrument from PicoQuant, and hybrid live-cell imaging instrumentation. Space and financial support for other types of single
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radiation, ultrafast and attosecond laser technologies, electron microscopy techniques, or computational materials science are also encouraged. Candidates of all ranks are invited to apply: Chair Professor