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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . We are looking for a Research Fellow to conduct research on additive manufacturing of advanced structural alloys
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fracture zones through seismic attribute analyses. The resulting geological models will form the basis for the assessment of the geothermal potential by other partners in this project. The position includes
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, including FEM and structural analysis. Experience or interest in metamaterials, fracture mechanics, or advanced material behavior. Programming skills (e.g., Python, MATLAB, Julia,..), ideally with experience
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skills are required and experience with seismic data in tight and fractured formations are desirable. The applicant must be fluent in spoken and written English. We offer numerous benefits, including
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mechanical testing systems, particularly servo-hydraulic systems knowledge of the fatigue analysis of materials and components background in fracture mechanics characterization of composites basic knowledge
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precipitates may trigger void nucleation. The result is intergranular fracture that compromises ductility, especially in high-strength alloys where the contrast between grain interiors and PFZs is severe
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 4 hours ago
. This research may include analysis of regional and global stress fields for fracture formation. Mapping using Geographic Information Systems (GIS) tools can be used to constrain the mechanisms and stresses
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IFREMER - Institut Français de Recherche pour l'Exploitation de la MER | Brest, Bretagne | France | 3 days ago
of time-mean downhill flows over large-scale topography, small-scale features (e.g., fracture zones) introduce further complexity. We propose to focus our study on the Mid-Atlantic Ridge (MAR) sector within
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of Behavioural Medicine, 4(1), 92–100. Cohen, S., Kamarck, T., & Mermelstein, R. (1983). A global measure of perceived stress. Journal of Health and Social Behavior, 24, 385–396. https:// doi. org/ 10. 2307
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the following research project : From bond-scale dissipation to macroscopic fracture energy in foam-cemented granular materials This postdoctoral position is part of a proposal to be submitted for funding under