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of simple pairwise interactions, we will explore how behaviors, beliefs, and ideas spread through networks with higher-order structures. Our focus will be on developing theoretical models that capture
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, and structural complexity. A comprehensive array of characterization methods is used to elucidate fundamental nanoscale properties and understand the physicochemical transformations
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experience in developing electronic structure methods and their application to perform atomistic simulations of molecules and materials. These include (but are not restricted to) SIESTA (www.siesta-project.org
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precision by chemical and structural manipulation, nanostructuring and interfacing materials that are identified as strategic in the roadmap for new technologies (hybrid metal-organic heterostructures
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DOCTORS FOR ACCESS TO THE SPANISH SYSTEM OF SCIENCE, TECHNOLOGY AND INNOVATION, FUNDED BY THE UPV RESEARCH STRUCTURES (PAID-10-22) 97540 The research work aims to study the physical-chemical interactions in
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FOR HIRING DOCTORS FOR ACCESS TO THE SPANISH SYSTEM OF SCIENCE, TECHNOLOGY AND INNOVATION, FUNDED BY THE UPV RESEARCH STRUCTURES (PAID-10-22) 100356 Development of injectable bio-microelectronic devices
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technological impact in various systems, extending the study to more complex geometries such as 2D structures and highly multi-modal non-Hermitian devices. Recent studies have demonstrated that a system composed
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OF SCIENCE, TECHNOLOGY AND INNOVATION, FUNDED BY THE UPV RESEARCH STRUCTURES (PAID-10-22) 99443 We seek a highly motivated researcher to develop and optimize hydrogen combustion systems for next-generation
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glasses. Metallic glasses are non-crystalline multicomponent alloys, i.e. they are solid metals with the structure of a liquid. Within the field of physical metallurgy, metallic glasses show so unique
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structurally cohesive individuals’ acquaintanceship networks are across categorical boundaries of gender, social class, ethnicity, political orientation, or religion, and/or associating these networks with