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solutions for offshore wind turbines, enabling to enhance their structural awareness, real-time reliability assessment, and predictive maintenance decision support through integrated sensing, modelling, and
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Education Institutions. Preference factors: Motivation for experimental work in robotics, marine systems, and underwater platforms; Knowledge of the analysis and design of underwater vehicles or structures
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systems using synthetic biology, microbial cultivation, and molecular biology approaches. The successful candidate will work with cultivation and engineering of marine bacteria and microalgae, construction
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on 1 November 2026. The position focuses on assessing the cumulative impacts of offshore wind farm development on marine socioeconomic systems, while contributing to interdisciplinary research
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Marine Biodiversity, you will develop and validate a multimodal bioimaging workflow that connects sensor measurements with their biological meaning. The model will combine RGB images, hyperspectral imaging
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intervention fidelity and refine theory of change. You will be responsible for: Recruiting participants for the process evaluation Conducting semi-structured interviews with peer support workers, trial
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-101094250, designated by IMAGINE - “Next generation imaging technologies to probe structure and function of biological specimen across scales in their natural context” funded by the European Commission
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These tools will be used to obtain high-resolution insights into fuel-air mixing, spray break-up, heat release, soot formation, and in-cylinder flow structures. The purpose of a postdoctoral position is to
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(Italy) and IRD (France). The topic is the measurement of waves, and the turbulent mixing and entrainment of air bubbles and oil droplets, with the aim of improving existing modelling tools for marine oil
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) . The section engages in theoretical, experimental and numerical fluid mechanics. This includes technology for the green transition, marine hydrodynamics, hydrodynamic waves, and continuum mechanics. This project