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and localization of earthquake-induced damage, including numerical simulations and full-scale laboratory tests Where to apply Website http://www.unipg.it Requirements Additional Information Eligibility
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Your Job: This PhD project focuses on modelling and simulating future gas grids, exploring transformation pathways, and developing cross-sectoral simulation frameworks to support informed decision
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on model approach to improve vegetation’s impact on energy fluxes and related permafrost dynamics improve the process-based fire model SPITFIRE to better simulate fire effects on tundra vegetation and
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and simulation studies for power systems. Perform data processing, numerical analysis, and validation using programming tools (e.g., Python/MATLAB). Contribute to technical reports, research
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deployment enabling validation and demonstration of real-world applications. For more details, please view https://www.ntu.edu.sg/erian We are seeking a Research Fellow to lead the development and
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is looking for a PhD Student (f/m/d) - Electrochemical swing adsorption of carbon dioxide. Your tasks Performing quantum mechanical and ML-based simulations to determine CO2 adsorption energies
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of surfactant and lipid systems. The research focus includes problems such as cavitation, foam stability, and surfactant-mediated interfacial processes. The work will involve MD simulations, numerical analysis
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: 857524), and the Operational Program of the Centro Region of Portugal (CCDRC Ref: CENTRO-45-2020-75), in the conditions described below. The full text of the Call is available at https://www.uc.pt/mia
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Inria, the French national research institute for the digital sciences | Villers les Nancy, Lorraine | France | 5 days ago
to intertwine a multi-contact whole-body controller, a digital simulation of the interacting humans, and machine learning models to predict and respond to human movements and intentions. In a crescendo of
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the magnetospheric and planetary orbiters of BepiColombo, and comparing with numerical simulations, the project aims to provide completely new and critical insights into Mercury's magnetospheric ion dynamics. 1