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Massachusetts Institute of Technology | Cambridge, Massachusetts | United States | about 10 hours ago
Position Location: Cambridge, Massachusetts 02139, United States of America [map ] Subject Area: Physics / Nuclear Physics Appl Deadline: 2026/04/03 04:59 AM UnitedKingdomTime* (posted 2025/12/04 05:00 AM
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at https://indiana.peopleadmin.com/postings/31658 . Contact: Ceren Dag Email: Postal Mail: IU Physics, 727 E. Third St., Swain Hall West Rm. 152, Bloomington, IN 47405 Web Page: https://physics.indiana.edu
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the Hopkins group is lead by David Kaplan and Surjeet Rajendran. The successful candidate will have expertise in theoretical particle physics and a PhD in physics or a related discipline by September 2026
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PREM Center for quantum materials innovation and education excellence (CQMIEE) at UCF (https://prem2.cecs.ucf.edu/). Khondaker group’s current interest is in the discovery of exotic electronic and
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. Job Description: Lead design, deployment, and recovery of a compact multi-station seismic array across the beach–dune transition; manage instrumentation, power, and data logistics. Build data pipelines
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Materials Required: Further Info: https://argonne.wd1.myworkdayjobs.com/Argonne_Careers/job/Lemont-IL-USA/Postdoctoral-Research-Associate---Machine-Learning-in-High-Energy-Physics-Detector-Operations_421270
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other applications of microfabricated circuits, transducers and systems. The group [https://www.nist.gov/pml/microsystems-and-nanotechnology-division/photonics-and-optomechanics-group ] offers a highly
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the Commonwealth of Kentucky Required License/Registration/Certification Licensed or eligible for licensure in the Commonwealth of Kentucky Physical Requirements Sitting and standing for long periods of time
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an interactive and dynamic setting. Additional Qualifications Special Instructions Contact Information Jason Eldridge https://www.physics.harvard.edu/ Harvard Physics Department 17 Oxford Street Cambridge, MA
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metrology, ii) bottom-up synthesis of nanostructures, and iii) process engineering for energy and healthcare applications. Specifically, we leverage atomically thin (2D) materials as ideal model systems