Sort by
Refine Your Search
-
Category
-
Program
-
Employer
- Aalborg University
- Aarhus University
- Aalborg Universitet
- Technical University Of Denmark
- University of Copenhagen
- Technical University of Denmark (DTU)
- Copenhagen Business School
- Aarhus University (AU)
- TEGNOLOGY APS
- Technical University of Denmark
- Technical University of Denmark;
- University of Southern Denmark
- University of Southern Denmark (SDU)
- 3 more »
- « less
-
Field
-
will join an interdisciplinary team working across electrolysers, Power-to-X systems, power electronics, control, digital twins, and energy-system optimization, in close collaboration with the Technical
-
for Applied Power Electronic Systems. You will join an interdisciplinary team working across electrolysers, Power-to-X systems, power electronics, control, digital twins, and energy-system optimization, in
-
, the candidate should have a solid background in construction and operating rf ion traps, CW laser systems including control of output powers, polarization states, linewidths and frequencies, as
-
team working across electrolyzers, Power-to-X systems, power electronics, control, digital twins, and energy-system optimization, in close collaboration with the Technical University of Denmark (DTU
-
including commercial external cavity diode laser systems, TiSa-lasers, fiber-lasers and quantum cascade lasers Developing (electro-)optical setups for controlling the frequency and shaping the power level of
-
for Applied Power Electronic Systems. You will join an interdisciplinary team working across electrolyzers, Power-to-X systems, power electronics, control, digital twins, and energy-system optimization, in
-
knowledge in building ventilation systems, heat transfer, fluid dynamics, machine learning, data analysis, and coding e.g., Python. Understand sensors, actuators, data acquisition, and control systems
-
This is a fulltime 19 month position starting from 1 February 2027 or as soon possible. The primary duties of the postdoc will be to: - Develop a dynamic access control model that supports multi-tenant
-
actuation and control. Although research has demonstrated stable levitation and contact-free pumping in laboratory-scale systems, reliable design methods for realistic industrial operating conditions remain
-
disciplines and to industrial and healthcare partners. Expected start date and duration of employment 01.12.2026 Job description The successful candidate is expected to develop an independent and