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determine ideal nano-composites for permanent magnets. In collaboration with Aarhus University, you will get to validate your modelling results against experiments. You will also get to supervise a PhD
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-inspired approaches for modeling, designing, and predicting the response of composite systems. Responsibilities: Develop AI approaches for predictive multi-physics response of composites in Energy
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discipline. Applicants must demonstrate substantial hands-on experience in the synthesis and characterization of semiconductors, nanomaterials, 2D materials, multifunctional materials, or advanced composite
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to evaluate air pollution in Morocco and Africa using modelling tools. The project objectives fall around the chemical transport modelling of the composition of the air over Morocco and Africa, better
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an atomistic model of the electrode/electrolyte interface in the batteries developed by ITEN, at the anode and at the cathode. Both electrodes are based on lithium-based transition metal oxides. The development
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Geological Evolution of Major Shield Volcanoes on the Moon Using Contemporary Lunar Mission Datasets
National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 3 hours agomorphology with 3D model of the all shield volcanoes. Methodology: To investigate detailed compositional variability, the candidate will generate Integrated Band Depth (IBD) parameter map to identify different
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an atomistic model of the electrode/electrolyte interface in the batteries developed by ITEN, at the anode and at the cathode. Both electrodes are based on lithium-based transition metal oxides. These models
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integrating hyperspectral observations from the EMIT platform and other complementary satellite observation records towards the mapping biocrust community composition and functional diversity across global
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here is the prediction of the composition of communities of marine entities (zooplankton, marine snow particles, and coral reef fishes) from environmental data taken around the point of the biological
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 10 days ago
detailed cost and emission analyses regarding production and processing of geologic hydrogen over a range of possible scales, depths, and compositions. Will regularly present research results at meetings and