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-based design to manage architectural complexity, automated generation of safety artifacts (such as Fault Trees and FMEA), and formal verification of FDIR strategies. Furthermore, the research will explore
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Inria, the French national research institute for the digital sciences | Saclay, le de France | France | 2 months ago
phenomena. New meta-model architectures based on learning may be proposed and tested on complex EDF use cases. However, this is not sufficient: can such a surrogate, learned from simulation data, predict
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community-led design. You will be part of the Making With cluster https://www.tue.nl/en/research/research-groups/making-with within the Department of Industrial Design. You will also work closely with
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PhD Candidate to conduct research on Artificial Intelligence for managing Shipbuilding Supply Chains
; Autonomous ships and remote control. The research partners are the Norwegian University of Science and Technology (NTNU), University of Oslo, Oslo School of Architecture and Design, Royal Norwegian Naval
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at a global scale, with a special focus on the privacy risks of LM-based architectures. Where to apply Website https://networks.imdea.org/job/phd-position-in-cross-platform-tracking-and-priv
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, quantify uncertainty, and enable real-time decision-making. The project will explore hybrid AI architectures, weather-integrated forecasting systems, and edge-deployable intelligent models. The goal is to
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20 Jun 2026 Job Information Organisation/Company Vrije Universiteit Brussel (VUB) Research Field Architecture » Other Engineering » Civil engineering Geography » Economic geography History
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Coordination » (LCC) in Toulouse, which specializes in all areas of coordination chemistry across three main research areas (Catalysis, Living Systems, and Materials) within the "Ligands, Complex Architectures
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. Finally, another expected outcome of this thesis is the formalization of global AD system architectures that explicitly integrate human interaction. It is worth noting that the thesis will rely
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, and the formation of a perfusable endothelial network. The central hypothesis is that the physical properties of the extracellular matrix—including stiffness, porosity, architecture, molecular transport