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and actuate [2], which opens new possibilities for controlling cellular function. In the recently funded RIBOTICS (RNA Origami Technology in Cell Systems) project, the lab aims to develop RNA origami
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and actuate [2], which opens new possibilities for controlling cellular function. In the recently funded RIBOTICS (RNA Origami Technology in Cell Systems) project, the lab aims to develop RNA origami
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research project Disruptions in protein quality control lead to the accumulation of misfolded proteins and protein aggregates. Aggrephagy, a selective form of autophagy, is a key pathway for the clearance
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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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performances on pea plants. The position is available from the 1st ofNovember 2026 or as soon as possible therefter. Job description The aim of the project is to develop an AI-based phenotyping system for high
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medicine. The lab invented the RNA origami method [1] and have developed basic algorithms and software for RNA design. However, there is a great need to develop new software for the design of advanced RNA
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an interdisciplinary research project aiming to develop a multimodal organ-on-chip platform for studying metabolism and reactive oxygen species (ROS) in infection models. The project integrates
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and power (CHP), and application-specific energy storage systems. We are also exploring how quantum computing can unlock new optimization and control strategies in future power systems. Our projects
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and/or language skills Hands-on skills and programming experience Who we are The robot design and control team led by Xuping Zhang is dedicated to advancing robotic interaction and manipulation, with a
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The Department of Agroecology at Aarhus University, Denmark, is offering a postdoctoral position in the Soil Fertility Section, starting 01-08-2026 or as soon as possible thereafter. The position