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100 employees where extensive research is carried out centered on various aspects of nanophysics, ranging from materials science to bio- and quantum physics to various applications. The division is a
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centered on various aspects of nanophysics, ranging from materials science to bio- and quantum physics to various applications. The division is a central part of NanoLund, Lund University's large
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For Me, a Centre of Excellence focused on fast-growing broadleaved trees for sustainable forests, materials and energy. The doctoral student will join a multidisciplinary forest research environment and
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Research Centre in Alnarp and is part of Trees For Me, a Centre of Excellence focused on fast-growing broadleaved trees for sustainable forests, materials and energy. The doctoral student will join a
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To meet the general entry requirements you must have been awarded a second-cycle (Master’s) qualification, satisfied the requirements for courses comprising at least 240 credits of which at least 60 credits
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broadleaved trees for sustainable forests, materials and energy. The doctoral student will join a multidisciplinary forest research environment and work with academic, public- and private-sector partners
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-bandgap semiconductors and 2D materials, or establish activities on materials and processes beyond current activities, for development of solid-state quantum technology. Materials characterization
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, the orbital angular momentum is also a quantum property that can be harnessed to create novel orbital electronic devices. Over the past decades, the advent of graphene and other atomically thin 2D materials
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materials as electrolytes, and batteries built without bulky anode materials, commonly known as “anode-free” batteries. As part of a larger research project in collaboration with the National Taiwan
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Laboratory has for many years hosted a research environment focused on the development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel