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- Catalan Institute of Nanoscience and Nanotechnology (ICN2)
- UNIVERSIDAD DE LAS PALMAS DE GRAN CANARIA
- Universidad de Alicante
- BCBL - Basque Center on Cognition, Brain and Language
- Basque Center for Macromolecular Design and Engineering, POLYMAT Fundazioa
- FUNDACIÓ ESADE - UNIVERSITAT RAMON LLULL
- Fundación Investigación del Cáncer Universidad de Salamanca
- ICN2
- Institut Català de Nanociència i Nanotecnologia
- Institute of Materials Science of Barcelona (ICMAB-CSIC)
- Instituto de Ciencias del Patrimonio - Spanish Council for Scientific Research (CSIC)
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- Universitat de Barcelona
- Universitat de Vic (UVIC - UCC)
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and international environment, with training in AI, microscopy, and computational structural biology, and will benefit from established collaborations with the Soft Matter Lab (University of Gothenburg
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of osteoarthritis). This project aims the following main objectives: Define patient-specific key functional and mechanical requirements for large osteochondral scaffolds. Produce biocompatible porous 3D structures
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of osteoarthritis). This project aims the following main objectives: Define patient-specific key functional and mechanical requirements for large osteochondral scaffolds. Produce biocompatible porous 3D structures
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) to collaborate with the funded line of research “Artificial reef construction using electrochemical processes”. Reference: I-PI 96-25 Pursuant to the provisions on the regulations governing calls for applications
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advanced materials with tailored functionalities, exploiting structural control at the atomic and nanometric level to engineer enhanced thermal and electronic performance. Our research spans organic and
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thermal management in energy conversion and data processing electronic devices. Fundamental understanding of nanoscale heat transport remains out of reach, and current models beyond diffusion are not
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research activity of the group on nanostructured superconductors for applications in quantum technologies (SuperQMat group, https://icmab.es/superconducting/superqmat ) The position is in the framework
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spin, orbital (including orbital Hall), and proximity effects (spin-orbit and exchange), which alter the band structure of the 2D materials and drive efficient torque and field-free switching. Recent
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are offering a one-year contract for a PhD position in complex systems and complex networks, with a particular focus on network geometry and its implications for the structure and function of complex systems
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the spatiotemporal and structural dynamics of reading networks using advanced neuroimaging methods. The position offers interdisciplinary training in behavioral, functional, and structural MRI, alongside hands