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bind to the biomolecules of interest. In this PhD project, you will explore a novel direction: you will develop and test binder molecules for continuous sensing using de novo protein design strategies
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, the effectiveness of Helix—and other advanced wake-mixing strategies—strongly depends on the accuracy of the wind farm models used to design and evaluate these control strategies. Improving the predictive capability
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Design and build flow setups using 3D printer, pumps, valves operated by a computer and the corresponding software. Develop flow cells to connect various spectroscopic tools to the setup. Create and
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Offer Description Deploy detailed models of coupled ocean / sea ice processes, probe their turbulent interactions, compare with observations, and design parameterizations for global climate models. Job
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excellent training programmes. You will work on the greenest and most innovative campus in the Netherlands, in an international and open working environment. Selection process For more information about the
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to you as a (former) employee. If you have any questions, we are happy to help. You will work on the greenest and most innovative campus in the Netherlands, in an international and open working environment
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radars provide increasingly rich 3D information, opening the door to more advanced scene understanding and perception tasks such as 3D object detection and free space estimation. However, current neural
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Particle Motion. The project includes nanoswitch design, sensor fabrication, sensor testing, and modelling. The longterm goal is to enable multiplexed continuous real-time sensing for applications in
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improvements are required at multiple levels, including system architecture, photonic integrated circuits (PICs), electronic integrated circuits (EICs), and advanced packaging technologies. The co-design and
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questions, we are happy to help. You will work on the greenest and most innovative campus in the Netherlands, in an international and open working environment. Selection process For more information about the