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actuation and control. Although research has demonstrated stable levitation and contact-free pumping in laboratory-scale systems, reliable design methods for realistic industrial operating conditions remain
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reliably assess fatigue damage and predict remaining lifetime, enabling proactive maintenance strategies that extend service life and reduce CO2 emissions. Through this PhD scholarship, you will contribute
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software. Pre, mid, and post-training, adaptation, and evaluation of large language models and foundation models for biological, genomic, and phylogenetic tasks. Reliable, reproducible, and auditable AI
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chemical characteristics of both the Vertical Electrical Shaft Kiln and the e-Transformer. Based on this model, you will design, analyse and evaluate control concepts for the pilot system. The model will be
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and analysis, and contributions to reports, research papers and programme evaluations. The research assistant will also help document learning outcomes and institutional development experiences emerging
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researchers All tasks will be carried out in close collaboration with members of the Plant-PATH research groups and the Centre Coordinator. Qualifications We are looking for a motivated and reliable student who
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collaboration on the DTaaS platform - Integrate the developed model into the existing DTaaS platform developed at AU - Evaluate the developed model with respect to the goals defined in the project - Help
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selects the candidates to be evaluated. All applicants will be notified whether or not their applications have been sent to an expert assessment committee for evaluation. The selected applicants will be
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to how latency, interference, reliability, incomplete observations, and limited wireless resources affect sensing, inference, and decision-making, and how communication and sensing resources can be
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methane-mitigating potential; however, its use has also raised animal welfare concerns. Consequently, there is a need to evaluate the animal welfare effects of seaweed-based feed additives. Research tasks