11 facial-"https:"-"https:"-"https:"-"https:" research jobs at The Ohio State University
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Staphylococcus aureus . The successful candidate will contribute to laboratory studies investigating bacterial resistance mechanisms, antimicrobial susceptibility, gene expression, and host-pathogen interactions
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recombinant protein expression, purification, and biochemical characterization. Extensive experience with molecular cloning and DNA manipulation techniques. Experience developing and optimizing high-throughput
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/ household units that focuses on a bio-psycho-socio-environmental (BioPSE) model of the risk for, expression of, and protection from persistent distress, suicide, and overdose. Clinical Research Assistants
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desired. Computer skills required with experience using Microsoft Office Software applications desired. Must be able to effectively communicate, both face-to-face and in writing, with clinical staff
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microbiology studies, β-lactamase expression analyses, biofilm assays, whole-genome sequencing, and integration of microbiological and clinical data. The position offers unique opportunities to collaborate with
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expression, clustering, dimension reduction, pathway analysis, survival analysis, and multivariable modeling. Strong analytical, organizational, and problem-solving skills. Ability to work independently while
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their role in cancer development; analyzes changes in gene copy number and mRNA or protein expression, gene cloning and mutation detection; immunological, and therapeutic vaccine development; participates in
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journals. Proven hands-on experience in recombinant protein expression and purification, and structural analysis of macromolecular complexes. Ability to work independently with a high level of rigor and
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open-minded exploration and courageous thinking, and upholds freedom of expression. Ohio State is a dynamic community where opportunity thrives, and individuals transform themselves and their world
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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