50 modal-analysis-artificial-intelligence Postdoctoral positions at University of Minnesota
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applications from diverse candidates and are committed to creating an inclusive and supportive research environment. Job Responsibilities Data Analysis and Publication (50%) Test hypothesis around developmental
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applications from diverse candidates and are committed to creating an inclusive and supportive research environment. Job Responsibilities Data Analysis and Publication (50%) Test hypothesis around developmental
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location; however, the Post-Doctoral Associate will be expected to reside in Minnesota for the duration of employment. Responsibilities Data analysis and model development (70%) Lead meetings with forestry
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approaches. • Drive a project from the conceptual stage to publication. • Identify funding opportunities and apply for grant funding. Data Analysis & Scientific Communication (15%): • Maintain a detailed and
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gap between how artificial and real networks learn. The Department of Neuroscience at the University of Minnesota is home to a strong and collaborative community studying motor learning and motivational
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experimentation, data analysis, and scholarly communication. Experience with plasma chemistry, catalytic lignin upgrading, nanomaterial synthesis, biobased materials, and biochar characterization will be highly
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analysis of data including measures of pupil dilation, microsaccades, and behavioral measures of speech perception. Experience with data collection and statistical modeling of time-series data are essential
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. There will be opportunities for professional skill development and career enhancement as well in this position. Job Duties: 1. Data analysis (70%) 2. Scientific writing, figure preparation (20%) 3
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/pharmacodynamic data analysis in the presence of high-dimensional covariates for the improved model-informed decision making. The initial duration of this position is 1 year, but may be extended or a second and/or
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disease, and ALS. Our research utilizes a multidisciplinary approach incorporating mouse models, molecular/cellular biology techniques, and analysis of human postmortem brain and spinal cord tissue