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Field
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. The project spans three integrated research arms: Epidemiology, led by European partners, where we will use four pooled European birth cohorts to study the health effects of air pollution mixtures and heat on
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or other 2D material studies. Experience with nanofabrication and low-temperature measurement. Preferred Qualifications: Experience with microwave measurements Additional Information: Applications should
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, and processing of materials under high temperature pyrolysis. The candidate will aid staff in conducting high quality research by developing, integrating, and deploying materials to be used
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evolution, phase stress, and defect evolution using advanced data analysis tools. Perform alloy fabrication and processing (e.g., arc melting, heat treatment) and relate processing to performance. Apply
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finite-temperature anharmonic effects, thereby expanding the existing ab initio thermodynamic database to support the Bayesian inversion framework of the SHARP Thematic Project (Task 21, WP3). The project
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will support a federally sponsored fundamental science research project within the Department of Mechanical Engineering at the University of North Texas. The research focuses on nanoscale heat transport
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aspects of transport in the atmosphere, ranging from greenhouse gases to pollutants, water vapour and heat, and we use inverse modelling techniques to determine sources of greenhouse gases, radionuclides
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Fellowship focused on polarization caloritronics, the study of coupled heat and polarization transport in ferroelectric materials. Besides supporting the existing experimental effort, the postdoc will lead the
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reactants; handling air- and moisture-sensitive materials; loading and sealing reactants in suitable containers or crucibles; and conducting high-temperature reactions by arc melting, induction-, tube-, or
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will be involved in quantum sensing experiments (temperature/magnetic field) that may involve novel materials such as point defects in 2D materials (e.g., in hexagonal Boron Nitride and related) and