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Field
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. This project aims to quantitatively image the bulk structure and discontinuity topographies of the mantle transition zone (MTZ), to quantify trade-offs between these and to deduce fluxes of heat and material
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use four pooled European birth cohorts to study the health effects of air pollution mixtures and heat on childhood asthma and lung function. Toxicology, led by the Texas A&M School of Public Health
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associated composites, for applications in the fields of energy and the environment (CO2 capture, capture of volatile organic compounds (VOCs), detection, catalysis (H2 production, etc.), heat exchange
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models for high-temperature structural materials with applications in nuclear reactors and other energy systems. The candidate will collaborate with ANL staff to review, validate, and enhance methods
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fundamental projects funded by InnoSuisse and the Swiss National Science Foundation on simulations of precursor transport, heat distribution, the nucleation, and growth of thin films in atomic layer deposition
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particles that initiate ice. Typically, they consist of solid material. There has been interest in biological aerosol particles since they can nucleate ice at warmer subzero temperatures than other types
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kinetics, and high-temperature radiation transfer is highly desired. Experience in studying material reactivity at high temperature using TGA/DSC or mass spectrometer is highly desired. Experience in
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undertake high-impact research at the interface of materials science, advanced imaging, and artificial intelligence, with a particular focus on developing automated approaches for analysing multi-modal
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studies with controlled humidity and temperature settings. We also utilize the BSL-3 and ABSL-3 facilities at the Laboratory for Infectious Disease Research (LIDR), a 32,403 sq. ft. Regional Biocontainment
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with experimental and computational partners in Germany and the United States. The goal is to fabricate candidate coatings and assess their performance under ion irradiation and high heat-flux / thermal loading