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Field
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Geophysics, Physics, Mathematics, Earth Sciences or closely related discipline. Experience with and love for linking models to field data. Solid understanding of seismic wave fields and their mechanics
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for linking models to field data. Solid understanding of seismic wave fields and their mechanics. Ability to work independently, and collaborate effectively within a multidisciplinary research team. Excellent
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-time (100%) postdoctoral scholarship holder in the field of gravitational wave instrumentation, with a focus on a novel calibration technique for Advanced Virgo+ Phase 2 (O5). The Particle Physics group
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(pure and metal-doped) and carbon chains in supernova ejecta. • Apply molecular dynamics (MD) methods to simulate the formation of alumina agglomerates. • Use ab initio wave function methods to model
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natural-hazard professionals make decisions to protect communities from co-occurring wildfires, wildfire-smoke events, and heat waves Develop frameworks to support these decisions. Research activities will
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applications and impact in audio, communications, and music technology. - Develop theoretical models of wave propagation and hybrid methods that combine physical models with artificial intelligence techniques
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that include mid-circuit measurements and feedforward Quantum simulation of many-body and lattice-gauge theory models Microscopic physics of Josephson junctions Other topics of mutual interest About the Yale
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floating offshore wind (FLOW) in deeper Atlantic and Celtic Sea waters. These are among the most energetic waters in which FLOW has been contemplated. Wave conditions frequently exceed the operating limits
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activity focuses on understanding the scalar sector of the Standard Model by considering both the Higgs boson and Nambu-Goldstone states. The selected candidate will be able to contribute, in particular
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to turbulence, shock wave boundary layer interactions in the supersonic and hypersonic regimes. The Aerodynamics laboratories are equipped with state of the art wind tunnels with a large low-speed (low-turbulence