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wearable systems, including artificial hearts, blood pressure sensors, and soft robots for the heart, which adapt to people's physiological and mental needs. In this project, you will closely collaborate
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(approx. 80%) in the recycling of bio-based residual streams into textile fibers, yarns, and structures. AI support in the process chain: develop and apply image analysis and sensor technologies (e.g. RGB
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Description Automatic Control comprises the analysis and synthesis of models and model-based algorithms for control, estimation, and monitoring of complex dynamic systems. Duties As an Associate Senior Lecturer
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on literature from mathematics, computer science, robotics, and game theory. Join a growing research group developing state-of-the-art algorithms for agentic decision making. About us The Department of
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, and numerical ship analysis. The goal is to develop a digital twin—a virtual replica of a ship’s physical systems—that combines real-world sensor data with advanced numerical models of hull, engine, and
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performance through the integration of AI, big data analysis, and numerical ship analysis. The goal is to develop a digital twin—a virtual replica of a ship’s physical systems—that combines real-world sensor
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of molecular dynamics algorithms in GROMACS. The main focus will be on mixed precision techniques as part of the GANANA EU-India HPC partnership. This R&D work will involve: Design and development of mixed
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, C/C++, Java. JavaScript), especially in design, analysis and implementation of geometric algorithms (computational geometry, map-based web interfaces, GIS). It will be considered a merit if you also
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sensors and electrochemical actuators, along with the requisite testing and characterization. You will further collaborate closely with other members of the multidisciplinary team on the relevant Organ
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settings and in quantum serverless computing environments. The work will range from theoretical and algorithmic development of compilation and scheduling techniques, through the design and implementation