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of the following areas is an asset: fluid dynamics, droplet impact, multiphase flow, heat transfer, phase change, high-speed imaging, vacuum systems, optical diagnostics, or surface science. Experience
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Extensive experience with high-vacuum equipment Experience in 3D modelling and design using AutoCAD or comparable software Experience in simulating ion trajectories in ion-optical systems using SIMION
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design and vacuum technology. Electronics and instrumentation. Experience with laser systems and optical setups. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR8552-THIJAC-001
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characterization of materials. • Development and operation of experimental test benches under high-vacuum conditions. • Definition of test protocols, including detailed test procedures and acceptance criteria
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 3 hours ago
. A complete list of Designated Countries can be found at: https://www.nasa.gov/oiir/export-control . Eligibility is currently open to: U.S. Citizens; U.S. Lawful Permanent Residents (LPR); Foreign
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of Physics in the Faculty of Science is looking for a full-time (100%) postdoctoral scholarship holder in the field of gravitational wave instrumentation, with a focus on ultra-high vacuum (UHV) technology for
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of ageing and degradation mechanisms under simulated space environments. Assessment of material behaviour under thermal cycling, vacuum, radiation and other relevant environmental conditions. Correlation
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 9 days ago
are made in an ultra-high vacuum system to simulate the low-pressure environments we are trying to simulate, and also to avoid contamination from the Earth's atmosphere. An infrared spectrometer is used
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scenarios, the project focuses on increasing the technology readiness of the sensor and enabling its adoption in scientific and industrial vacuum applications through continued technological development and
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, the further development of a frequency comb laser in the vacuum-ultraviolet (VUV) spectral range will be pursued. In contrast to existing VUV comb systems, a novel, much more efficient approach will be targeted