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the design and optimization of multistatic and multifrequency radar architectures for near-field 3D imaging. - Contribute to the electromagnetic modeling of radiating systems, wave-object interaction, and
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(UAB) in the framework of the PHYNEST project. PHYNEST is a prestigious new MSCA-COFUND doctoral programme coordinated by the UAB, designed to recruit and train 25 doctoral candidates. The programme
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. Electrodeposition mechanisms are rather complex, and the effect of each process parameter on the final composition depends on how it interacts with the others. This interdependence highlights the need for design
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approaches will be developed to design molecules from scratch and are expected balance interaction with multiple targets. Specific goals are: Development of a conditional generation approach for the de novo
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aims to develop physics-informed artificial intelligence tools for single-molecule fluorescence microscopy. The PhD student will focus on designing AI-based methods for quantitative analysis of protein
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goals. The project focuses on the design, synthesis, and functionalization of metallacages constructed from metal-ligand coordination, with special emphasis on gold and platinum-based systems
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, designed to recruit and train 25 doctoral candidates. The programme focuses on advanced materials, innovative methodologies, and transformative solutions that address today’s most pressing challenges in
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of teacher education in Lleida during the 19th and 20th centuries. The PhD research line focuses on the design of a Public History digital archive targeted to historians, educators, and the wider community
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pioneering project in the field of multifunctional and sustainable ceramic and glass materials. 🎯 Project Goal The project focuses on the design and manufacturing of ceramic and glass materials with optical
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multiple medical fields. Functions to be developed: Assist in the design, manufacture and characterization of peptide coatings and low modulus bioalloys. Participate in chemical techniques to functionalize