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available in the Materials Science and Engineering & Applied Physics Program. This position focuses on materials for harsh environmental conditions (e.g., high temperatures, high pressures, and high-corrosion
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transportation system which include compression and liquefaction. The impurities will pose a safety and lifetime estimation risk to the system as they are very corrosive. There is a need to expand the knowledge
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in collagen, the mechanics of earthquakes, fracture of soft materials, and modeling failure in multiphysical processes such as corrosion-driven degradation of concrete. What unites these efforts is a
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. Over time, the roughness of waterway surfaces in a turbine evolves due to processes like erosion, corrosion, deposition, and cavitation. These changes can significantly affect the safety, performance
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Are you interested in advancing materials for safe and reliable nuclear power using cutting-edge characterization techniques? Join our team at Chalmers to explore corrosion mechanisms in zirconium
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lithography, etch and deposition techniques, proper chemical handling, safety and storage, and support system maintenance and service. For a full job description, please click here: https://mitnano.mit.edu
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ancient metallic alloys, focusing on both corrosion and archaeometallurgy. Additional analyses will also be conducted at the Centre Ernest Babelon in Orléans and the Laboratoire Métallurgies et Cultures in
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chemistry, industrial materials recycling and nuclear chemistry − covering CO₂ capture, high‑temperature corrosion, recycling of critical metals and fuel cycles. Projects span from fundamentals to industry
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. We work across materials chemistry, industrial materials recycling and nuclear chemistry − covering CO₂ capture, high‑temperature corrosion, recycling of critical metals and fuel cycles. Projects span
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https://www.nist.gov/programs-projects/pipeline-safety to learn more about our facilities and current research. Radiation; Metallurgy; Materials science; NDE; Modeling; Fracture; Fatigue; Corrosion