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Wetsus - European centre of excellence for sustainable water technology | Netherlands | about 1 month ago
through second uses such as agriculture or aquifer recharge. Advanced electrodialysis (ED) with monovalent-selective membranes enables chemical-free desalination by tailoring ionic compositions using only
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experiments, design and implement advanced detection techniques, analyse data, and carry out numerical trajectory simulations of deceleration and scattering processes. You will have the opportunity to work with
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Centre for Cognitive Science and Artificial Intelligence at Tilburg University. The project will be supervised by Dr. Koen Haak and involve collaborating closely with a postdoctoral researcher, the group
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candidate, and one Post doc. As a PhD candidate and postdoctoral researcher, you will conduct educational design research, i.e. a development study aimed at designing evidence-based solutions for complex
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Wetsus - European centre of excellence for sustainable water technology | Netherlands | about 1 month ago
hydrodynamic mixing plasma energy density (power, frequency, volumetric flow) voltage waveform, electrode number, shape and material gas phase composition (air, N2, Ar, or mixtures) water chemistry (pH
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, stability, safety, and usability under clinically relevant constraints. Perform ex vivo evaluations using soft-tissue models to simulate gastrointestinal navigation and refine the system’s interface and
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polarization purity, especially during scanning operations. Conceptual Design and Simulation: Design initial conceptual models of active array antennas with an emphasis on polarization purity. Advanced
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–specific ways, and their downstream biological effects remain poorly understood. This project tackles this fundamental gap — by building computational models that simulate what goes wrong in the brain, one
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, multiphysics simulations, device implementation, and experimental validation. Key responsibilities: Develop theoretical and numerical models of piezoelectric energy harvesters under heavy-load conditions. Design
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compact models. Compact models are the optimum trade-off between the required physical functionality and computation intensity. As such, they enable the simulation of advanced and high-integration-density