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Field
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studies in microfluidic channels and real porous building materials (limestone and sandstone) at the laboratory scale under controlled environmental cycling. Using advanced imaging and characterization
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methods, fine-tune and align them for specific operational domains, and deploy them locally under full control of sensitive operational data. A central maritime use case will be condition monitoring and
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in wireless communications, communication theory, signal processing, or RF systems. Aerospace Engineering, especially candidates with experience in LEO satellites, mega-constellations, orbital systems
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. Control and dynamic systems: A solid understanding of control theory, dynamic modelling and autonomous systems. Experience with trajectory tracking, path following, model-based control, state estimation
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PhD Candidate to conduct research on Artificial Intelligence for managing Shipbuilding Supply Chains
processing data streams, with theories and methods for planning and logistics. The PhD research will focus on AI-enhanced planning of operations in shipbuilding supply chains, examining how AI techniques can
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. Job description The Aerodynamics group is composed of 12 scientific staff and hosts the Chairs of Experimental Aerodynamics, Computational Fluid Dynamics and Flow Control. The group has a specific
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PhD Candidate to conduct research on Artificial Intelligence for managing Shipbuilding Supply Chains
of AI is both a technical and an integrative challenge. It requires combining what AI excels at, such as pattern recognition and processing data streams, with theories and methods for planning and
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excluded based on these checks. Primary checkpoints are the Export Control regulation, the Sanctions regulation, and the national security regulation. Desired qualifications Background in Bayesian
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heterogeneity and typologies, diverse values and valuation of nature, and theory of transitions and transformations Conducting and analyzing semi-structured interviews and workshops with stakeholders Develop
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controlled liquid and gas/vapour conditions. Quantify reaction kinetics, peptide loading/release and selectivity using complementary analytical methods such as UV/Vis spectroscopy, mass balance and, where