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EU's Work Package, spanning childhood and adolescence. The role will include designing, implementing and analysing a 3-wave quasi-experimental, accelerated longitudinal study in primary schools, as
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . We are looking for a Research Fellow to support research project. The role will focus on ultrasonic tomographic
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fundamental physics experiments in space such as gravitational wave detection and dark energy and dark matter searches. Opportunities to partner with academic and government research laboratories as
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analysis of the Einstein equations, analytical and numerical approaches to strong-field dynamics, relativistic and mathematical cosmology, relativistic matter dynamics in curved spacetime, nonlinear waves
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algebra, iterative solvers, preconditioning - Wave propagation problems Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7598-PIETOU-006/Default.aspx Work Location(s) Number of offers
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methods, numerical analysis for stochastic PDEs, numerical analysis for multiphysics problems that couple different types of PDEs for waves, heat, elasticity, flows, etc. The duties primarily involve
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optically detect the magnetic resonance of the magnetic dendrimers. - Measurements by continuous wave electron spin resonance - Set up of a new optical detection of the magnetic resonance in the infra red
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, and gravitational-wave observations. Ideal applicants should have a strong experience in cosmological MHD simulations (preferentially with Eulerian codes), in the study of Faraday Rotation and other
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full-wave simulations and characterize the relevant metamaterial structures. Extend existing analytical tools and numerical models. Prepare and publish scientific articles and reports and co-supervise
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avalanche diodes (SPADs) based on germanium-on-silicon (Ge-on-Si) epilayuers capable of detecting infrared radiation in the short‑wave infrared (SWIR) range (λ=900-1600 nm). Compared to other Ge-based SPADs