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numerical modelling tools, i.e. a depth-averaged (2DH) and a 3-dimensional (3D) model, in the TELEMAC modelling system (www.openTELEMAC.org ) to simulate the fluxes and fate of plastics in the Scheldt Estuary
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the FWO project ‘ECHO-FLIGHT’. This project builds on nearly two decades of research in 3D in-air sonar and bat echolocation to enable, for the first time, full-scale quadrotor UAV control based primarily
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that is part of the FWO project ‘ECHO-FLIGHT’. This project builds on nearly two decades of research in 3D in-air sonar and bat echolocation to enable, for the first time, full-scale quadrotor UAV
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This interdisciplinary project uses advanced stem cell-based embryo models, called blastoids (developed in the laboratory of Prof. Vincent Pasque), which mimic the early human blastocyst stage. Your work will focus
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5D assessment of the spectrum (i.e., frequency, time, and 3D spatial measurement). The data acquisition system will coherently measure spectrum emitters in aerial or terrestrial wideband settings