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magnetic composite materials. We will investigate nano-structuring to realize a strong permanent magnet using our state-of-the-art open source micromagnetic model, MagTense, which you will help develop
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devices. The microneedles are manufactured by a collaborating group (Biomaterial Microsystems) at DTU Nanolab. The PhD candidate will be a part of the Pharmaceutical Technology group (see more information
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following: Sensor fusion framework: Identifying and integrating suitable sensor types across USVs and UUVs (e.g. optical cameras, sonar, magnetic sensors, acoustic modems) to create a complementary dataset
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September 1, 2025, or as soon as possible thereafter. The f -elements of the periodic table play an essential role in numerous technologies, including catalysts, magnets, and photonic devices. Their distinct
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integration. The focus will be advanced packaging and integration mechanisms for wide-bandgap power devices and passive components (magnetics and capacitors), as well as innovative power delivery architectures
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Technologies with focus on application of photonics to geosciences with the aim for example to quantify rates of Earth-surface processes Magnetic Materials and Neutron Scattering with focus on magnetism in
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) 1 September 2025 or as soon as possible thereafter. The project We seek a PhD student to support the exploration of strong magnetic coupling between a mechanical resonator and an individual electronic