106 phd-scholarship-in-computational-material-science Postdoctoral positions at The Ohio State University
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contributing to grant writing and mentorship of junior colleagues and participation in professional societies. Position requirements: PhD in Physics, Medical Physics, Electrical/Biomedical Engineering or related
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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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Microbiology, Biomedical Sciences, Bioinformatics, Computational Biology, or a related discipline is required by the start of employment. Experience in conducting microbiome research, including processing
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-for-purpose modeling efforts. MINIMUM QUALIFICATIONS: PharmD or PhD in pharmacology, statistics, engineering, or related field; specific training, experiences, and a demonstrated track record in applying PK/PD
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: FAES | Horticulture and Crop Science We are seeking a highly motivated Postdoctoral Research Associate with a strong background in bioinformatics and computational biology to join Dr. Yu Ma’s laboratory
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& Immunity Department: Medicine | School Biomedical Sciences Microbial Infection and Immunity Post Doctoral Scholar to pursue research studying the mechanisms of host cell infection by the foodborne pathogen
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should have demonstrated outstanding performance throughout their previous studies with their own publications. The successful candidate should hold a PhD in biomedical sciences with less than 3 years
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Department: Medicine | School Biomedical Sciences Neuroscience Post Doctoral Researcher to pursue continued research experience and training within the Department of Neuroscience; conducts independent research
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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