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• Develop new computational research projects on contemporary antisemitism • Build computational pipelines for social media data collection and analysis • Supervise graduate and undergraduate research
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summary of research interests is required. For more information about the FSPH, visit: https://fsph.indianapolis.iu.edu Basic Qualifications Requirements: Recent graduate (within the past 5 years) with a
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contact information for three references to http://indiana.peopleadmin.com/postings/32977 . Applications will be reviewed upon receipt. For Best Consideration Date 05/04/2026 Expected Start Date 08/01/2026
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of Biology is a large, unified department with strong undergraduate degrees, nationally-ranked graduate programs, and world-class research spanning the breadth of biological questions and experimental systems
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or interest in the use of artificial intelligence, machine learning, or computational tools in behavioral and experimental economics is appreciated. Strong emphasis will be placed on demonstrated research
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theoretical high-energy or nuclear physics is required by time of appointment. Research experience in one or more relevant areas, including lattice QCD, effective field theory, hadronic/nuclear scattering, is
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Occupational Health Location Bloomington Position Summary Department of Environmental and Occupational Health Indiana University School of Public Health–Bloomington A postdoctoral fellowship is available in
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for possible exotic spin-dependent interactions. The group is part of the Center for Exploration of Energy and Matter (CEEM) at IU, which also includes research in theoretical nuclear physics, condensed matter
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the candidates research interest relevant to the job ad, and 4) contact information for three references to http://indiana.peopleadmin.com/postings/32618 . Applications will be reviewed upon receipt. For Best
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department, with active theoretical and experimental research in condensed matter and AMO physics, as well as correlated condensed matter, quantum materials, driven/dissipative systems, and quantum information