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gates have been demonstrated across various physical qubit platforms. However, achieving universally useful quantum processors requires integrating and controlling millions of qubits, making scalability
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. The acronym CAUSE stands for Concepts and Algorithms for - and Usage of - Self-Explaining Digitally Controlled Systems. Digitally controlled systems are ubiquitous in our everyday lives, from transportation
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of plant development. You will work in an interdisciplinary team with postdocs from Jülich and Hohenheim. Your tasks Literature research and (meta-)analysis to provide evidence-based knowledge for model
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aims to revolutionize our understanding of molecular interactions at solid–liquid interfaces through innovative experimental approaches. By combining expertise in: Feedback controlled thermofluidic
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Jun 2025 Financing yes Type of Position Full PhD Working Language English German Required Degree Master Areas of study Automation Technology, Mechatronics, Robotics, Systems Engineering, Applied
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applications, such as wireless and wireline communications, satellite systems and high-accuracy radars and sensors for industrial automation. Multiple research associate / PhD candidate positions are available
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understanding of transport systems spanning microscopic, mesoscopic and macroscopic levels. Of particular focus will be automated planning methods that leverage emerging data and novel metrics that embed ethics
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patient-derived, isogenic-corrected patient-derived controls and healthy-derived iPSCs and evaluate pathomechanisms through in-depth molecular, physiologic, and morphologic phenotype analysis. WP2
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engineering aspects related to dynamic modeling and the Guidance, Navigation, and Control (GN&C) of advanced autonomous spacecraft. Emphasis will be placed on real-time attitude control and proximity
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engineering aspects related to dynamic modeling and the Guidance, Navigation, and Control (GN&C) of advanced autonomous spacecraft. Emphasis will be placed on real-time attitude control and proximity