Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
energy system is undergoing a fundamental transformation driven by the rapid integration of renewable energy, electric vehicles and large-scale AI data centers. Power electronic converters play a pivotal
-
, 6G communication, and wireless sensor networks, as well as research and education in Life Science, health technology, smart electronic sensors, and medical systems. The Department of Electrical
-
€93.7 million European flagship project building the next generation of semiconductor packaging – the part of chip making that decides how small, fast and powerful electronics can get. You will join a
-
staff position within a Research Infrastructure? No Offer Description We are now looking to appoint a PhD student in Mixed Ionic–Electronic Materials for Thermal Energy Harvesting, placed
-
flagship project building the next generation of semiconductor packaging – the part of chip making that decides how small, fast and powerful electronics can get. You will join a team that works with 60
-
well as societal applications in cancer treatment, radiation-tolerant microelectronics, and other radiation-based technologies. Duties The doctoral project will investigate the competition between different reaction
-
, Campus Norrköping. Research area The present position is part of the European Research Council (ERC) Starting Grant project “High-Efficiency Thermal Energy Harvesting via Ionic Thermoelectric–Electronic
-
into electric power systems, Power electronics related to the integration of batteries and variable renewable generation, Power quality challenges associated with increased electrification. Entry requirements
-
PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
, with the aim of creating new routes for information processing beyond conventional electronic approaches. The doctoral candidate position is funded by the Marie Skłodowska-Curie Doctoral Network SPARK
-
and later life stages, which has further limited our ability to identify critical windows of sensitivity to climate change. New methodological advances now allow us to standardise how we compare