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Field
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structures in collaboration with local partners; · Leading baseline (Before) and follow-up (After) monitoring campaigns using: o Wave and sediment sensors, o LIDAR and acoustic mapping, o
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others have recently made significant progress in understanding how these structures are regulated. However, mechanisms that regulate other abundant alternative DNA conformations , including hairpins
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Concrete is one of the most widely used materials in construction, but its production significantly contributes to CO₂ emissions. To address this issue, our project focuses on creating supplementary
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. Thermoplastic composites, combined with novel material architectures, are central to this transition, enabling recyclable, lightweight structures. Research now targets energy-efficient, automated processes and
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these structures are regulated. However, mechanisms that regulate other abundant alternative DNA conformations, including hairpins, cruciforms, and triplexes, remain poorly understood. In this project, we aim
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, are central to this transition, enabling recyclable, lightweight structures. Research now targets energy-efficient, automated processes and machinery to deliver high-quality components for the next generation
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Concrete is one of the most widely used materials in construction, but its production
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global CO₂ emissions, largely due to its dependence on clinker—the key constituent of conventional cement. To accelerate the decarbonization of construction materials, the C-Sink Project (funded under
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the decarbonization of construction materials, the C-Sink Project (funded under the EU EIC Pathfinder Challenges 2024) is developing a breakthrough binder system that integrates CO₂-sequestered magnesium silicate
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development measures and structured career parameters, such as: Successful candidates will be offered a postdoctoral position at one of the participating institutes. The postdoctoral positions within