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of this research will significantly advance understanding of planetary subsurface structures and their geological and climatic evolution, and will develop transferable methodologies applicable to Earth observation
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insights into the properties of advanced structural materials, and theoretical results relevant to safe, sustainable nuclear energy and nuclear waste management, in line with European and Italian strategic
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construction of mechanical systems. It operates on four main thematic areas: 1) Mechanical design, 2) CNC machining, 3) Additive manufacturing and 4) Mechanical assembly and testing. The facility is equipped
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–matter interactions at the nanoscale, with a particular emphasis on how plasmonic excitations modifies the electronic structure of adsorbed molecular systems. For an overview of our research activity
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mechanical requirements for large osteochondral scaffolds. Produce biocompatible porous 3D structures that mimic osteochondral tissue native hierarchical structures starting from alternative biomaterials
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training in microbiology, analytical technologies, bioinformatics, and translational research. The programme includes structured training events, transferable skills development, and international
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-economical society requirements. Objectives The research aims to study and verify the durability of a widespread historical construction technique, i.e. earthen mortars (also used for plasters), and their
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or dynamic environments. At the same time, radio sensing and semantic mapping provide access to rich signal-level information that implicitly contains predictive structure. Certain radio features, although not