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of conceptual and numerical models describing sediment material properties, sediment and water transport, leveraging in-situ and indirect measurements such as geophysical and/or remote sensing
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transport, leveraging in-situ and indirect measurements such as geophysical and/or remote sensing observations.Conducting fieldwork in Greenland, including UAV-based sampling campaigns and vibroseismic
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physical interaction capabilities for autonomous mining applications. You will work closely with researchers in robotics, sensing, and autonomy, and collaborate with both academic and industrial partners
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hyperpolarized 13C magnetic resonance spectroscopy, nanodiamond-based quantum sensing of ROS, and advanced label-free optical microscopy to establish robust experimental workflows for studying infection biology
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for Reduction of Oil-in-Water, which aims to develop advanced online oil-in-water sensing and control technologies applicable for offshore industrial processes. The ARROiW project involves academic partners as
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sensing and autonomous systems into geospatial analysis? Do you thrive in interdisciplinary environments and enjoy combining data-driven research with hands-on fieldwork — whether on boats, underwater
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medicine. The lab invented the RNA origami method that allows rational design of RNA scaffolds and devices for expression in cells [1] and have recently developed RNA origami robots that can sense, compute
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design. However, there is a great need to develop new software for the design of advanced RNA origami robots that can sense, compute and actuate [2]. In the recently funded RIBOTICS (RNA Origami Technology
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medicine. The lab invented the RNA origami method that allows rational design of RNA scaffolds and devices for expression in cells [1] and have recently developed RNA origami robots that can sense, compute
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origami robots that can sense, compute and actuate [2]. In the recently funded RIBOTICS (RNA Origami Technology in Cell Systems) project, the lab aims to develop RNA origami robots for cell factories (yeast