Sort by
Refine Your Search
-
The rapid electrification and digitalisation of society are creating increasingly complex electromagnetic environments. Fast-switching power electronics in vehicles, buildings, hospitals and farms
-
Vacancies PhD position in Mapping the Modern Electromagnetic Environment: Identifying Stray Currents in Complex, Interaction-Driven Systems Key takeaways The rapid electrification and digitalisation
-
Are you our next PhD candidate eager to build fast and multi-scale electromagnetic techniques for analyzing state-of-the-art RF applications and systems? Are you interested in making RF system
-
electromagnetic techniques for analyzing state-of-the-art RF applications and systems? Are you interested in making RF system design possible in which even the small details can be readily incorporated
-
of: electromagnetic sensor design, modelling, prototyping and experimental validation. The best fit is A candidate interested in high-frequency measurement techniques, sensor hardware development and precision
-
on electrical and calorimetric efficiency measurements. Choose the research direction that fits you: PhD 1 on Wideband current sensors has the primary emphasis of: electromagnetic sensor design
-
carried out into the applications of electromagnetic phenomena in all forms of energy conversion, telecommunication and electrical signal processing. Existing and new electrical components and systems
-
and acquire those skills and able to deploy them during the course of the project. She or he has a demonstrable interest in optics and electromagnetic scattering, signal processing, and mathematics, as
-
sovereignty, and cyber-electromagnetic resilience. The PhD researcher will primarily work within Tilburg University’s AI research infrastructure, focusing on algorithm development, model training, and
-
sovereignty, and cyber-electromagnetic resilience. The PhD researcher will primarily work within Tilburg University’s AI research infrastructure, focusing on algorithm development, model training, and