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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 22 hours ago
research in general relativity, or alternative theories of gravity, and in gravitational waves. Preferred Qualifications, Competencies, and Experience Preferred experience includes using gravitational waves
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] Subject Area: Astronomy / Theoretical Physics / Astrophysics, Cosmology, Gravitational waves, Particle physics (theoretical and experimental) Physics / Astroparticle Physics, Astrophysics (astro-ph
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: Gravitational Physics Appl Deadline: (posted 2023/09/28, listed until 2025/09/28) Position Description: Apply Position Description The Laser Interferometer Gravitational-Wave Observatory (LIGO) has as its goal
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, and Abilities: Experience with neutron or x-ray scattering from single crystals Experience with characterizing magnetic and structural dynamics using neutron scattering Modeling neutron scattering from
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: Gravitational Physics Appl Deadline: none (posted 2024/12/03) Position Description: Apply Position Description The Laser Interferometer Gravitational-Wave Observatory (LIGO) has as its goal the development
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related technical field, where prior research experiences in the analysis of aerodynamic noise, vortex sound, and/or wave scattering are highly valued. The postdoctoral scholar will benefit from
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Max Planck Institute for the Structure and Dynamics of Matter, Hamburg | Hamburg, Hamburg | Germany | about 2 months ago
Modelling Dr. Dominik Sidler – Theoretical Modelling Our team in Hamburg is committed to the ab initio description of quantized light–matter interactions in the non-relativistic limit. Our mission is to
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, longitudinal data analysis, and/or categorical analysis (e.g., growth mixture modeling) using R, Mplus, and/or SAS. Preferred Qualifications: Experience with analyzing multi-wave longitudinal and intensive
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, and Abilities: Experience with neutron or x-ray scattering from single crystals Experience with characterizing magnetic and structural dynamics using neutron scattering Modeling neutron scattering from
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at the APS, integrating x-ray optics and wave propagation models with realistic sample simulations based on dislocation dynamics and molecular dynamics of relevant materials. Significant attention needs