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. Further information on data protection and the processing of personal data can be found at: https://www.isas.de/en/datenschutz . The closing date for applications is February 2, 2026. Please apply via our
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, pursuing a diverse range of topics at the leading edge including high-speed optical transmission, signal processing, ultra-wide-band amplification, nonlinear photonics, fibre gratings, fibre lasers, bio- and
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the field of fluid mechanics, multiphase flows, thermodynamics and heat exchange, laser measurement techniques, machinery dynamics, tribology and diagnostics of energy production machinery. The thematic
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 9 hours ago
. Description: This opportunity involves research and development activities in the following technology areas: 1. Chip-scale stable laser systems using MEMS and nanophotonic technologies including but not
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and signal processing; computer engineering and controls and robotics. The department is home to the Advanced Lasers for Extreme Photonics Center, and is a very active node of LaserNet US, a Department
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transport experiments inside as well as a laser laboratory with Particle Image Velocimetry (PIV) and Laser-Induced Fluorescence (LIF) experiment capabilities. We are also in the process of expanding
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letter, a CV and the name of two references Note: During the selection process, additional documents could be requested REF: PID2023-152154NB-C21 Where to apply Website https://www.nanociencia.imdea.org
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applicants in 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
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for position, please do so by visiting: https://careers.purdue.edu/job/Teaching-Assistant-Undergraduate-Student-%28Outside-of-Purdue%29/36339-en_US/ Please note: You must be currently enrolled as a degree
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the inverse-Compton scattering and the nonlinear Breit-Wheeler processes. At multi-PW laser facilities such as APOLLON and ELI-NP, strong-field QED experiments can be performed by colliding high-energy