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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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, on both a day-to-day and long-term basis. 10% Participate in Lab/Department Activies Present research findings at lab meetings and departmental symposia. Attend seminars and interact with laboratory
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to their research. Ideal candidates will be expected to employ state-of-the-art computational tools to analyze phylogenetic, metagenomic and multi-omics data sets generated from different clinical trials. Applicants
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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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should be open to learning new techniques and have a strong interest in using next-generation sequencing-based techniques to study virus-host interactions. Specifically, Individuals will perform epigenetic
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learning new techniques and have a strong interest in using next-generation sequencing-based techniques to study virus-host interactions. Specifically, Individuals will perform epigenetic (Including histone
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responsible for degradation, and quantify microbial responses to fluorinated pesticides and pharmaceuticals using cell sorting and sequencing techniques. The individual will also interact with, lead, and assist
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effects in pediatric cancer. Collaborate with other researchers to better understand the complex interactions between health determinants and disease outcomes. Extract and analyze large datasets
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response to pathogens. The lab uses state-of-the-art techniques including single cell RNA sequencing and spatial transcriptomics. The individual will have the opportunity to work on their professional
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analysis ●Assist with supervision of trainees and their interactions with study methods and data ●Contribute substantially to the preparation of manuscripts via literature review, data analysis and