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discipline, and an interest in learning how to handle optical equipment, operate laboratory instruments and analyse data. You have a good basis in optics, laser spectroscopy and signal-processing techniques
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independently (although supervision by expert researchers will be provided); Study literature; Develop research plan; Experimentation and data processing; Biofunctionalization of interfaces; Optical and
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physics, engineering, photonics or a related discipline, and an interest in learning how to handle optical equipment, operate laboratory instruments and analyse data. You have a good basis in optics, laser
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project independently (although supervision by expert researchers will be provided); Study literature; Develop research plan; Experimentation and data processing; Biofunctionalization of interfaces; Optical
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an in-house 3T magnet. The turbulent pipe flow will be characterized using modern optical methods, over a large range of Reynolds numbers from 1E4 up to 1E6. The research co-funded by an industrial
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samples without evaporation, implement real-time monitoring of ultrathin liquid films at the nanometer scale and estbalish high-speed control system instrumentation for ultrafast freezing of biological
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to investigate the flow physics. You will also construct a prototype to test the performance using an in-house 3T magnet. The turbulent pipe flow will be characterized using modern optical methods, over a large
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. Preferably, you have experience in one or more of the following fields: scientific instrumentation, microfabrication, 3D-printing, finite element analysis, atomic force microscopy (AFM), microfluidics, optical
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Interested in working on a the future of optical inertial sensing for mechatronic vibration control? Join our team! Job description The CHiPS (Compact High-Precision Sensors) project aims
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the following traits: Educational background: A master’s degree in computer science/artificial intelligence with a solid grounding in optical and spectroscopic instrumentation, such as hyperspectral, NIR, and