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Field
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knowledge gap stemming from the broader difficulty of coupling directly to azimuthal waves with large orbital indices. The goal of this internship is to study these hidden azimuthal modes using a scanning NV
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heat waves, impacting ecosystem carbon storage worldwide. Join the Institute for Biodiversity and Ecosystem Dynamics (IBED) in this interdisciplinary project to uncover how vegetation traits and
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal
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change is transforming our oceans: reshaping wave climates, marine renewable energy potential, and coastal systems. This PhD position offers a unique opportunity to contribute to this challenge by working
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regions, but also at all latitudes and at all local times. The probe is currently in its second mission extension phase, with an end date currently scheduled for October 2028. The Juno/Waves instrument
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waves and other weather extremes affecting society and the energy system. There are large knowledge gaps regarding the power production reliability under severe weather conditions and transforming energy
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, navigation in waves or ocean currents, and underwater manipulation. At the same time, Foundation Models have transformed several fields of artificial intelligence by learning general-purpose representations
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The Einstein Telescope (ET), as a next-generation gravitational wave detector, will provide deeper insights into the universe than ever before. A major scientific project of this scale requires
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with a broad toolkit: magneto-transport, ferromagnetic resonance and propagating spin-wave spectroscopy, and synchrotron-based scanning transmission X-ray microscopy (STXM) for direct, time-resolved
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal