68 evolution "https:" "https:" "https:" "https:" "https:" "UCL" Postdoctoral positions at Cornell University
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new tool development CAROW advances the work of faculty and institutes conducting translational labor research and brings them together to drive new insights. Responsibilities: This position will
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Qualifications PhD in Animal Science, Agricultural Economics, Sociology, Environmental Science, Global Development, or other fields with relevant experience. Demonstrated experience with collection and/or analysis
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University is seeking a highly motivated researcher to develop and apply cutting-edge artificial intelligence approaches for conservation genomics. The successful candidate will lead the development of novel
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Associate will receive $70,000.00 in salary as well as a modest research budget and moving allowance. More information about the ILR School can be obtained at our web site, http://www.ilr.cornell.edu and
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, focusing on: Development of novel approaches to synthetic storm generation Implementation of counterfactual analysis for historical storms Integration of climate pattern effects (e.g., ENSO) into risk models
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develop and apply cutting-edge artificial intelligence approaches for conservation genomics. The successful candidate will lead the development of novel AI frameworks that: (i) integrate thousands of genome
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complementary expertise spanning engineering student learning and identity, faculty development and pedagogy, design- and project-based learning environments, institutional transformation in engineering education
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circuit platforms. This work includes the development and theoretical study of novel circuit architectures, aimed at improving coherence and enabling new approaches to quantum computation. The Postdoctoral
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collaborate on projects conducted at the Cornell Lab and with partners to support their career development. Anticipated Division of Time: Develop methods and quantitative workflows using Cornell Lab data
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-insect community as a model for hypothesis testing in molecular evolution. The individual will use methods such as RNA-seq to identify genes and regulatory sequences that drive plant toxin detoxification