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spreading” and 2.3 “Higher-order evolutionary processes”), aims to develop theoretical and computational models for the study of dynamical processes on networks with higher-order interactions. By employing
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adaptation, and unsteady force generation in dragonfly-inspired configurations. 2. Computational tool development — Extend the existing 2D FEM/FSI solver to efficient 2D and 3D simulation of compressible
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the flow stress curve parameters of materials to be used in FEM simulation of cutting processes. Regarding plastic deformation processes, research will focus on methodologies for the characterization
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of the city, including the effects and impacts of external changes (eg, climate change) and internal processes (eg, urban transition policies and incentives). A challenge for the development of Urban Digital
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physical effects. The research activity will also involve the study, simulation, development, and experimental validation of signal-processing techniques and electronic circuits, with particular attention
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-order spreading processes", aims to generalize the study of collective dynamics and depolarization from pairwise networks to higher-order systems with group interactions. The activity focuses on three
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the processes governing resource use, material, energy, and nutrient flows, as well as the environmental impacts associated with livestock production systems, with the aim of enhancing productive and
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for the efficient simulation of complex quantum systems, with applications to optimization and machine learning. The research will also address the development of advanced methodologies for quantum error correction
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processes for operational carbon reduction (mitigation) and simulate microclimate interventions to reduce heatwave vulnerability (adaptation). Where to apply Website https://phd.fbk.eu/calls/detail/urban
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) energy storage system for the simulation, analysis, and optimization of its operation within complex energy systems. The model will be used to support predictive energy resource management and the