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at computer workstation for extended periods. Shift Monday – Friday 8:00am – 5:00pm (40 hours/week) Job Summary The position will be responsible for developing instructional materials in Laser and Photonics
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a new class of active mirror to underpin the next generation of thin-disk lasers. What You’ll Do: innovate: develop scalable RPLD processes to fabricate REDS active mirrors collaborate: work with a
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Location(s) Number of offers available1Company/InstitutePhysique des lasers, atomes et moléculesCountryFranceCityVILLENEUVE D ASCQ Contact City VILLENEUVE D ASCQ Website http://www.phlam.univ-lille.fr STATUS
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not limited to the advanced 3D printers, CNC machines, waterjet and fiber laser in MakerSpace-managed spaces, as well as supervising and supporting student trainers. They work with students, faculty and
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accordance with European and German legal regulations. Further information on data protection and the processing of personal data can be found at: https://www.isas.de/en/datenschutz . The closing date
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Is the Job related to staff position within a Research Infrastructure? No Offer Description The Extreme Light Infrastructure ERIC (ELI ERIC) is the world’s largest and most advanced high-power laser
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stypendystów Projektu w ramach Działania 2.2. First TEAM (FENG 2021-2027) Fundacji na rzecz Nauki Polskiej” (https://www.fnp.org.pl/component/fnp_programs/program/first-team-feng/n… ) Institution: Wrocław
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“HORIA HULUBEI” National Institute for Research and Development in Physics and Nuclear Engineering | Romania | about 2 months ago
11 Mar 2026 Job Information Organisation/Company “HORIA HULUBEI” National Institute for Research and Development in Physics and Nuclear Engineering Department DR. LASER Research Field Engineering
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June and August of 2026, but a later start date in the 2026 calendar year is possible. Research Responsibilities (50%) Operation and management of an ESI NWR193 laser-ablation system coupled with Agilent
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To address these challenges, the PRICELESS project aims to perform simultaneous measurements of flow velocity and Planar Laser-induced Fluorescence (PLIF) on OH and NO molecules at high repetition rate up to