65 postdoc-computational-chemistry Postdoctoral positions at The Ohio State University
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of highly specialized mass spectrometry assays to support immuno-oncology and cancer biology research initiatives, collaborating closely with a multidisciplinary team of computational biologists
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Scholars are expected to lead analyses critical to the species delimitation research program and to take initiative in contributing to the design of investigations into little brown bats and other species
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| Mechanical and Aerospace Engineering Performs basic or applied research in the area of computational fluid dynamics, including problem setup, simulation and advanced post-processing for multiple projects
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Sciences | Microbiology Administration The postdoctoral scholar is expected to lead computational/theoretical work in the area of environmental microbiology, and will have the opportunity to contribute
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| Electrical and Computer Engineering This position researches theoretical and experimental methods for the detection of counterfeit integrated circuits assists with the development of grant writing and
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engineering related research, makes and records observations and measurements, collects and compiles data for computer input and analysis, perform literature search on related topics, and operates and maintains
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maintain all supplies related to their work in the lab, their office, and for their computer including warranty and new purchases. This person will analyze data from their work and prepare the results
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of the Medical Staff, and the direction of the attending psychologist. Completion of current doctoral program is required. 50% of duties will be inpatient. 50% of duties will be outpatient. Additional Information
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, and therapeutic response and resistance and to translate these findings to improve patient outcomes. The overall goal of this research program—spanning basic mechanistic discoveries, application of high
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of this research program—spanning basic mechanistic discoveries, application of high-throughput technologies, validation in cancer-relevant mouse models, and translation platforms—is to understand the fundamental