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Field
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the energy of waves, tides, and river and ocean currents into electricity and have the potential to provide millions of Americans with locally sourced, reliable energy. The Marine Energy Fellowship
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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, interfaces and 2D materials group. The main goal of the work is to theoretically describe electron-phonon fluctuations in the immediate vicinity of structurally ordered states (e.g., charge density waves CDW
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singularities of the Euler and Navier-Stokes equations. To access dissipative structures, we are developing two types of optical metrology methods : An innovative Diffusive-Wave Spectroscopy method that allows
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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also benefit from proximity to active research groups in gravitational-wave cosmology, BSM phenomenology, and quantum information in Helsinki. Our new fixed-term positions are intended for researchers
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to demonstrate matter-wave interferometry with a nanoparticle. -An optical interferometer for broadband axion-like particle detection. The applicant will be expected to work closely with graduate and undergraduate
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-owner of the NOT, a member of the Gravitational-Wave Optical Transient Observer (GOTO), and two ESO Extremely Large Telescope (ELT) instrument consortia MICADO and MOSAIC. Project context and job
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mathematical techniques for applications in EM theory, radiofrequency (RF) analysis/design for wireless systems, wave scattering and propagation, and wave-particle dynamics in accelerator physics, among others
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wave theory and nonlinear optics conduct research either independently or as part of a team contribute to journal publications and other academic outputs produce software implementations