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increasingly important in Swedish forestry as a complement to conifers and as part of climate-adapted forest diversification. Its wider use, however, requires better knowledge of the interacting biotic and
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conifers and as part of climate-adapted forest diversification. Its wider use, however, requires better knowledge of the interacting biotic and abiotic threats that affect young plantations and older stands
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The project will create spatiotemporal polaritons through ultrafast light–matter interactions in engineered metamaterial systems. The doctoral candidate will explore wide-bandgap semiconductors and high-quality
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growth, spatial data and GIS, and statistical analysis in R. About the position The doctoral student will plan and carry out field experiments and inventories, manage and analyse spatial and experimental
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to translate fundamental mechanistic understanding into broadly applicable strategies for catalyst and electrochemical system optimization. The PhD student will work on the design, characterization, optimization
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with European industry. The EISLAB division at Luleå University of Technology conducts research in electronic systems design, sensor systems, cyber-physical systems, the Internet of Things and machine learning
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PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
The project will develop ultrafast optical logic and memory concepts using spatiotemporal metamaterials. The doctoral candidate will design metamaterial structures coupled to quantum emitters for ultrafast
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into an internationally recognized researcher. Subject description Mining and Rock Engineering comprises mining technology, rock engineering and rock mechanics, including rock mass properties, design of rock excavations
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. The EISLAB division at Luleå University of Technology conducts research in electronic systems design, sensor systems, cyber-physical systems, the Internet of Things and machine learning, and works on
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. Subject description Robotics and artificial intelligence aim to develop novel robotic systems that are characterized by advanced autonomy for improving the ability of robots to interact with the surrounding