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years. Your work tasks This PhD project focuses on the design and control of energy-efficient hydraulic systems with integrated safety functionalities. The overall objective is to develop innovative
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-timescale optimization, and integrated Power-to-X systems. You will drive the development of system-level digital-twin and optimization methodologies, integrating electrolyzer models with renewable generation
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a particular focus on the integration of artificial intelligence with wireless sensing and communication. The research will study how radio signals and multimodal sensor observations can be jointly
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with new hires, ensuring the safety, compliance, and integrity of the workplace. Read more about The Technical Doctoral School of IT and Design Salary and terms of employment The employment is in
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, data analysis, and dissemination of research findings. The project combines perspectives from systemic innovation, integrated care, and health economics. The PhD student will collaborate closely with
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GAI becomes increasingly integrated into educational practice and uncritically adopted by students, there is a need to rethink both the role and design of GAI systems to ensure they strengthen rather
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GAI becomes increasingly integrated into educational practice and uncritically adopted by students, there is a need to rethink both the role and design of GAI systems to ensure they strengthen rather
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pilots to integrated, scalable solutions across sectors and geographies. As part of this, you will engage with partners in international pilots and contribute to comparative insights on enabling and
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dynamics, control algorithms and sensor integration can be designed as a coherent system to improve speed, range, maneuverability, response time and operational robustness while also having underwater
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the electrical grid, electrolysers, fuel-synthesis processes, energy storage and heat integration in integrated Power-to-X systems. You will develop and apply physics-based process models that describe