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to a deeper understanding of material behaviors, paving the way for the development of next-generation high-performance materials. For more details, please view https://www.ntu.edu.sg/mse/research and
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hands, and lifting up to 80 pounds. Regularly involves lifting, bending or other physical exertion. Often exposed to one or more elements such as heat, cold, noise, dust, dirt, chemicals, etc., with one
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of terrain including up and down hills, and on off road uneven surfaces Environment: Indoor and outdoor environment. Seasonal heat and cold or adverse weather conditions May be exposed to uncomfortable work
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) to analyze heat transfer and mechanical behavior Your Profile: University Degree in mechanical engineering, materials science, production engineering, or a related field Solid knowledge in manufacturing
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must successfully attach both your resume and cover letter to be considered for this position.** Job Requirements --- Required Education: High School Diploma or GED. Skills: Must be able to train all
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PHD DEVELOPMENT AND EXPERIMENTAL VALIDATION OF UNDERGROUND SAND-BASED THERMAL ENERGY STORAGE SYSTEMS
) systems are of particular interest due to their high storage capacity, low-footprint, and long-term heat storage potential. However, existing UTES solutions are predominantly water-based, for e.g. pit
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influenced by the sintering conditions. This PhD research aims to address these complexities by investigating the sintering kinetics and mechanisms of UO2 and high-Pu MOX fuel materials. The scientific
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this TRIP effect is crucial to overcome the strength-ductility trade-off enabling next-generation high-temperature structural materials. Scientific objectives This internship is part of a broader ANR (French
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Institut Jean Lamour - CNRS - Université de Lorraine | Nancy, Lorraine | France | about 2 months ago
-principal element materials with high strength and thermal stability at both ambient and high temperatures. These alloys, typically formed from transition metals of Groups IV (Ti,Zr,Hf) and V-VI (V,Nb,Ta,Cr
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also a way to accelerate the strength development, shorten the curing time, and improve the performance of cement-based materials. The high temperature action on recycled concrete can lead to the