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motivated and talented postdoctoral researcher to employ optical approaches to study the mechanisms of cortical network formation in the developing brain. We have recently obtained funding to use wide-field
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to investigate the underlying DNA damage response mechanisms in cancers. One area of active research is to investigate mechanisms of sensing and resolving R-loops in cancers to provide molecular insight
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studies and tissue sample collections and analysis Perform all phases of experimental investigations in consultation with the faculty advisor(s) Collaborate with other researchers in the collaborative
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surgeries and be responsible for all documentation and welfare checks -Become familiar with relevant literature and stay apprised of new studies -Conduct any of the following experimental studies that may be
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experimentation, data analysis, and scholarly communication. Experience with plasma chemistry, catalytic lignin upgrading, nanomaterial synthesis, biobased materials, and biochar characterization will be highly
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to state-of-the-art experimental studies of quantum devices relevant for topological and superconducting qubits. The successful candidate will participate in all stages of these experiments, from initial
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the pathways and mechanisms by which fungi interact with selenium, an essential toxin, in the environment. Specifically, this research examines the reductive transformation of soluble, toxic Se
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integrate the work of researchers from across disciplines to understand the mechanisms and impact of polyploidy on agriculture, biodiversity, and human health. Job Duties and Responsibilities: Typical tasks
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understanding of the mechanisms and phenomena underlying unconventional superconductivity. Job duties 70%: Research 10% Supervision of graduate students and/or undergraduates participating in relevant research
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tissue culture, experimental virology, transcriptome analyses, and immunologic assays. Prior experience conducting relevant experiments using in vitro and in vivo models of infection, such as flow