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design. This role is ideal for candidates with strong wet-lab experience in microbiology, molecular cloning, and antimicrobial assays. A working knowledge of basic statistics is required. Additional
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in an academic biosciences lab. Basic wet laboratory skills in biosciences (biology, biochemistry, biochemical engineering): e.g., molecular biology techniques, cloning, gel preparation, media
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biosciences lab. Basic wet laboratory skills in biosciences (biology, biochemistry, biochemical engineering): e.g., molecular biology techniques, cloning, gel preparation, media preparation, tissue culture, PCR
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Qualifications • Coursework or training in Biology, Neuroscience, Chemistry, or a related scientific field, with an emphasis on wet lab experience. • Hands-on experience with rodent handling in a research lab
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Nanopore sequencing, ChIP-seq, and Hi-C, to probe plant genomes and centromeres. The project will involve both wet-lab based functional genomics approaches, together with dry-lab based bioinformatics
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Nanopore sequencing, ChIP-seq, and Hi-C, to probe plant genomes and centromeres. The project will involve both wet-lab based functional genomics approaches, together with dry-lab based bioinformatics
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management duties and 75% wet lab work, as outlined below. The work will primarily take place in Wiseman Hall on the OSU Biomedical Campus. The Researcher 1 will meet weekly with Drs. Blaser and Toland
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management duties and 75% wet lab work, as outlined below. The work will primarily take place in Wiseman Hall on the OSU Biomedical Campus. The Researcher 1 will meet weekly with Drs. Blaser and Toland
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protein-ligand interaction dynamics in collaboration with wet-lab researchers? If so, this fully funded PhD position might be an excellent match for you.The interactions and dynamics of proteins and ligands
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variety of raw and processed genomic data (including DNA-seq, RNA-seq, small RNA-seq, Hi-C, as well as long-read sequencing - RNA and DNA - data), and work productively with wet and dry researchers in