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-funded by the Innovation Fund Denmark. The PhD student will be working in the framework of the ongoing collaboration between DTU Construct, and Danish companies with interest in implementing solutions
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systematic phases: first, establishing a robust data foundation; second, designing a modular and open digital platform; and third, developing a predictive maintenance application as a proof of concept
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limitations of current EMG-based techniques, particularly in dynamic movement tasks. The PhD student will focus on the design, development, and validation of the HD-sEMG/ultrasound system. This includes
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to STEM teaching User-centric development and interaction design. Research dissemination Software and Hardware development Applicants should hold an MSc degree in engineering and ICT (equivalent to a Danish
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for these types of experiments at the single cell level. Your primary tasks will be to: Design and conduct experiments to generate high-quality datasets Analyze and interpret complex datasets related to gene
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PhD fellowship/scholarship - Intercropping of cover crops and vegetables to mitigate nitrate leac...
be available for studying the interaction of species and management factors. State-of-the-art field and laboratory facilities and methodologies are available in our science team, where we have a
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: first, establishing a robust data foundation; second, designing a modular and open digital platform; and third, developing a predictive maintenance application as a proof of concept. Responsibilities and
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. Your work will focus on developing physics-informed AI methods to enhance decision-making in design and operation of next generation thermal energy storage systems, such as latent heat TES and
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during emergencies and is based on high-temperature PEM (HT-PEM) technology. The HT-PEM stacks operate at approximately 160 °C, offering simplified designs and operational advantages, including improved
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(ORR), oxygen evolution reaction (OER), and carbon dioxide (CO₂) reduction. Collaborating with theoretical research groups to guide the design of active site structures through computational modelling