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: Utilize techniques and tools in quantum information theory in the study of quantum thermodynamics Conduct high quality research in understanding the fundamental limits of controlling out-of-equilibrium
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and navigation algorithms for robot in complex environments. Key Responsibilities: Responsible for development of robust and reliable sensor fusion algorithms for localization and navigation algorithms
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) on the project “Meta-Learning of Robust State Estimation for Agile Mobile Robots.” The position focuses on advancing state estimation and odometry for robotic systems, with particular emphasis on LiDAR-Inertial
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involves designing, commissioning, and operating a fully automated fermenter system to support advanced bio-manufacturing, including the development of robust protocols for process control, monitoring, and
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involves designing, commissioning, and operating a fully automated fermenter system to support advanced bio-manufacturing, including the development of robust protocols for process control, monitoring, and
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at the Department of Technology Systems (ITS). The person hired in the position will work on theoretical algorithms for robust multiagent system coordination, and deploy these algorithms on a state-of-the art swarm
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systems, with a heavy focus on additive manufacturing and 3D printing technologies. Modify and optimize 3D printer firmware, including motion control, temperature regulation, extrusion parameters, and multi
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, Chair of Power Electronics, Faculty of Engineering). Objectives of the position: Develop an autonomous, robust, grid code-aware Hybrid Power Plant (HPP) control strategy which can be embedded in
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closely with biology and modelling colleagues in a vibrant interdisciplinary team. Key accountabilities / duties You will: Design, set up and deliver robust measurements of plant-generated acoustic
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fitness criteria of invasive and wild-type versus herbicide-resistant weed biotypes. The participant will learn to collect and analyze data related to weed control, herbicide efficacy, and comparison