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experience writing custom analysis software (MATLAB, Python, R). Experience publishing original research in leading journals related to biomechanics, biomedical imaging, musculoskeletal health and function
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team. The College of Arts and Sciences is the largest college and the academic heart of the university. The College hosts 81 majors. With 38 departments, 20+ world-class research centers, and more
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heart of the university. The College hosts 81 majors. With 38 departments, 20+ world-class research centers, and more than 2,000 faculty and staff members, students have the unique opportunity to study
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Postdoctoral Researcher -Discovery and Bioengineered Production of High-Value Plant Natural Products
of small molecules. • Excellent organization, communication, and interpersonal skills. The position is open effective immediately. The lab is based in the new Pelotonia Research Center in Columbus
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. These activities of the successful candidate for this position will aim to characterize pharmacokinetics, pharmacodynamics or the relationship between both (PK/PD) of small and large molecule anti-cancer agents
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field; Experience in new product or process design, development, testing, and implementation in the clinical and community environment; prior clinical or industry experience. Additional Information
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The OSUCC-James, dedicated to harnessing the body’s immune system to prevent, treat, and cure cancer. Established through a landmark investment from Pelotonia, the PIIO unites world-class immunologists
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38 departments, 20+ world-class research centers, and more than 2,000 faculty and staff members, students have the unique opportunity to study with the best artists, scholars, and scientists in
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college and the academic heart of the university, hosting 81 majors, 38 departments, 20+ world-class research centers, and more than 2,000 faculty and staff members. Location: Hagerty Hall (0037) Position
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immunologically “cold” tumors into “hot” tumors, thereby promoting immune recognition and response. We are particularly interested in investigating both genetic and chemical approaches to enhance MHC class I