59 communication-engineering-"https:" "https:" "https:" "https:" "https:" "https:" positions at Indiana University
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expertise in ultrafast spectroscopy. Ideal candidates will have completed a Ph.D. in chemistry, physics, chemical engineering, or materials science/engineering by or before August 2026. The candidate must
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University of Notre Dame. This Center for Quantum Technology (https://www.purdue.edu/cqt/ ) fosters industry-academia partnerships on translation of academic research to industry. IU Indianapolis, the health
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provides a range of public health services that includes technical assistance, coaching, and consultation to non-profits and community-based partnerships implementing substance abuse prevention or related
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in Indy: https://faculty.medicine.iu.edu/relocation . About the IUSM: IUSM is committed to being a welcoming campus community and we seek candidates whose research, teaching, and community engagement
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, data protection, intellectual property, artificial intelligence, legal technology, blockchain, or other areas that inform the impact of technology on human life or the practice of law. The Visiting Chair
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. Multiple faculty members are part of a state-wide NSF IUCRC consortium involving Indiana University, Purdue University and the University of Notre Dame. This Center for Quantum Technology (https
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interdisciplinary collaboration among faculty, students, community partners, and external organizations. Its programs support faculty research, student-engaged scholarship, public humanities initiatives, and cross
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Quantum Materials and Devices – Deng Research Group Prof. Bingchen Deng (https://luddy.indiana.edu/contact/profile/index.html?bingchen_deng) in the Department of Intelligent Systems Engineering at Indiana
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community with strong cross-disciplinary ties in computing, engineering, law, policy, and health. The Luddy School is home to internationally recognized centers in security and privacy, and offers a
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fellow to join the 3D Stem Cell Biology Research Lab (https://www.hashinolab.com ) and study normal and pathological development of the human inner ear using stem cell-derived organoids as a model system