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to characterize the genetic basis of human cancers; develops, adopts and implements new laboratory methods to achieve characterization of the genetic basis of human cancers; identifies novel genes and examines
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, viral genome identification and reconstruction, viral genome quality assessment, taxonomic and functional annotation, bacteriophage-host prediction, comparative genomic analysis, and characterization
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spectroscopy and the characterization of defects in semiconductor materials. Demonstrates expertise in investigating the optical and electronic properties of semiconductors to support the development of next
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infections. The successful candidate will lead and contribute to a variety of translational research activities, including antimicrobial susceptibility testing, inoculum effect characterization, molecular
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factors in human and tick cells, and will be tasked to identify and characterize functions of bacterial proteins and cognitive host cell molecules and signaling pathways. In addition, the researcher will
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infrastructure, including the NEXUS interdisciplinary materials characterization facility and the Scarlet ultrafast science laboratory, which provide state-of-the-art instrumentation for imaging, spectroscopy, and
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approach for a detailed understanding of phase separation control of gene expression; 2) molecular, cellular and biochemical characterization of defense signal flow through membrane-less condensates; 3
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Cell (CTC) isolation and analysis Extracellular Vesicle (EV) isolation and characterization Next-Generation Sequencing (NGS) technologies Mammalian cell culture Molecular cloning Western blotting RT-PCR
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, Physics or Applied Physics Required Experience: Strong background in TEM/STEM characterization. Desired Experience: Experience with EELS, diffraction contrast, 4D-STEM/ptychography. Familiarity with data