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Public Abstract | PAMS In Pursuit of Unambiguous Determination of Fe (III) versus Fe (IV) in Transition Metal Oxide Electrocatalysts Lauren F Greenlee, Ralph E Martin Dept of Chemical Engineering, University of Arkansas (Principal Investigator) Clemens Heske, Dept of Chemistry Biochemistry, University of Nevada, Las Vegas (Co-Investigator) Mixed transition metal oxides and hydroxides are at the forefront of
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Public Abstract | PAMS Public Abstract Poly- and perfluoroalkyl substances (PFAS) and 1,4-dioxane (1,4-D) are persistent emerging contaminants (ECs) that are currently under consideration for federal and state-specific regulations in drinking water Both PFAS and 1,4-D are highly resistant to degradation and are not effectively removed by conventional drinking water treatment systems Results from the Unregulated
Public Abstract | PAMS Domain pattern formation is one of the most common phenomena in nature and is a topic of immense interest in many fields including materials science, physics, chemistry, and biology The main objective of this research program is to explore the basic sciences concerning the thermodynamic stability of mesoscale polarization domain patterns and their temporal evolution mechanisms during
Public Abstract | PAMS A variety of molecular and cellular marker studies including assorted “omics’’ data have been reported in humans with breast cancer, and in mouse or cellular models exposed to medium to high radiation doses Single cell RNA (scRNA-seq) is a more recent and powerful technology allowing for studies of variation in many genes across a cell population In addition, there are limited genomics
Public Abstract | PAMS The in-house program is centered around the K500 and K150 cyclotrons and a variety of sophisticated experimental equipment The Institute also serves as a base for experimental and theoretical research carried out at other major national and international accelerator facilities This grant provides support for research and facility operations to carry out the scientific program at the Texas A
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Public Abstract | PAMS Gen3 Solid Particle Receivers (SPR) are being designed to generate high temperature heat transfer and storage media to drive high efficiency advanced turbine cycles in order to increase overall plant efficiencies and reduce the levelized cost of electricity (LCOE) of Concentrated Solar Power (CSP) plants Supercritical CO2 (s-CO2) advanced turbine cycles have the potential to raise CSP plant