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on their thermophysical properties and compatibility with heat transfer fluids. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen
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electrochemical characterization Experience with either electrolysers or flow batteries Experience/engineering skills with construction of experimental setups Good skills in communication of research results
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. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen understanding and optimize performance. Develop innovative approaches
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support the mission of the university through their work. Qualifications: PhD degree in Mechanical Engineering, Biomedical Engineering or a related field 1-3 years of experience Research and hands
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and graduate students Minimum Acceptable Education & Experience: PhD degree in Civil Engineering, Geography, or related fields Required Knowledge, Skills & Abilities: Proficient in geospatial data
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supports, nitride-based materials, and hierarchically structured porous materials for CO2 hydrogenation reactions using photo- or thermal catalysis. The successful candidate will be involved in optimizing
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scientific advice of the highest quality within building design and processes, building construction and safety, building energy and installation, solid mechanics, fluid mechanics, materials technology
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students interested in cutting-edge technology and research. We allow students to pursue their scientific creativity with guidance from leading chemistry faculty. UNT has a highly diverse campus with a wide
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focused on integrating synthetic biology, AI, and multi-omics technologies to decode and design gene expression regulation for human cell engineering. This role is based in Randall Centre for Cell
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: The candidates must have strong experience in MOF synthesis and characterization with a PhD and demonstrated experience in Materials Science, Materials Chemistry, Inorganic chemistry, catalysis, and related