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or affinity with embedded software development in C/C++ and Linux experience with 3D printing for manufacturing (e.g. Solidworks) practical, demonstrable skills in using robotics platforms (hardware and
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experience with 3D printing for manufacturing (e.g. Solidworks) practical, demonstrable skills in using robotics platforms (hardware and software) affinity with teaching and technical support, preferably in
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. Preferably, Mechanical Engineering, Material Science, Electronic Engineering publications in high-quality journals experience with 3D printing sensors, printed electronics, lithographic microfabrication
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Turbulence Generation System, 3D High-Speed Videography and Surface Imaging, Automated Motion Capture, Particle Image Velocimetry, Anemometers, Large Volume Stereo Fluoroscopy (XROMM), 6-axes Load cells among
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journals experience with 3D printing sensors, printed electronics, lithographic microfabrication, functional devices and IoT basic knowledge of computational techniques independent, proactive work ethics
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multidisciplinary project aimed at dissecting RNA structure ensembles in living cells. Particularly, they will: develop novel methods (both wet and computational) for the accurate interrogation of RNA 2D and 3D
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facilities, which will inspire your robotics research. The research instrumentation is world-class and includes a Wind Tunnel, Automated Turbulence Generation System, 3D High-Speed Videography and Surface
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methods (both wet and computational) for the accurate interrogation of RNA 2D and 3D structures in living cells apply novel as well as state-of-the-art methods to map and functionally characterize RNA