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Field
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creates new opportunities for engineering exotic quantum light sources and developing novel quantum simulators with long-range interactions. It would allow studying non-classical states with spread
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of inorganic ions and organic matter can cause defects in electrolyser stacks, resulting in costly process disruptions. This project considers: i) development of analytical methods for the quantification
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of antibacterial activity assays; • practical knowledge of computer programs like MS Office, Origin, GOLD, LigPlot, MestReNova, ChemSketch; • experience in preparation of manuscripts for publication in various
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programs and direct program activities within a specific functional area, generally acquired through four years of related experience. OR ANY OTHEREQUIVALENT COMBINAT ION OF RELEVANT EDUCATION AND/OR
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on assessing this risk and understanding mechanisms of degradation. This research opportunity addresses the complex and challenging issue of isolating and analyzing micro- and nanoplastics of diverse origin
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WMG, we are undertaking research into how traditional Li-ion battery cell design can be optimised through the application of systems engineering, component modelling and data science. Creating new
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Laboratory (Fermilab). The selected candidates will contribute to experimental testing, data analysis, and machine learning (ML) modeling related to the mechanical behavior of ion-irradiated High Entropy
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& Tomography Core Facility, which contains four electron microscopes including North America’s first “Aquilos 2”-model cryogenic focused ion beam/scanning electron microscope as well as a Krios cryoTEM. Position
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using a variety of molecular biology techniques including DNA purification, transformation, polymerase chain reaction, and Gibson assembly. • Expressing proteins from E.coli and mammalian sources (HEK293
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and testing of custom instrumentation components. In imaging and microscopy, the Research Assistant may contribute to electron microscopy experiments, including cryo-EM, cryo-focused ion beam milling