Sort by
Refine Your Search
-
Country
-
Employer
- Delft University of Technology (TU Delft)
- CNRS
- Aalborg Universitet
- BRGM
- CEA Paris-Saclay
- Eindhoven University of Technology (TU/e)
- Forschungszentrum Jülich
- Göteborgs universitet
- Institut Agro Rennes-Angers
- Institutionen för Biologi och miljövetenskap
- KU LEUVEN
- Lulea University of Technology
- Trinity College Dublin
- Université Libre Bruxelles
- Uppsala universitet
- 5 more »
- « less
-
Field
-
. The primary goal of this thesis is to develop innovative methodology that bridges Ultrafast Transmission Electron Microscopy (UTEM) and environmental TEM using in situ gas-heating holders. Once realized, this
-
notably on geothermal energy and heat storage, carbon capture and storage, natural hydrogen, underground storage of energy vectors, and radioactive waste storage. This position will contribute to the R&D
-
the following areas is considered a merit: nuclear fuel, fuel-performance modelling, reactor physics or nuclear engineering, numerical modelling of heat transfer, material behaviour or solid mechanics
-
. Model transition pathways for the ABEL technologies to integrate into existing or new value chains. Minimize energy and resource use through efficient heat exchange, waste heat recovery, and optimized
-
of Gothenburg can be found on the university's doctoral student pages. https://www.gu.se/en/doctoral-studies We offer The University of Gothenburg is a state authority, which means special benefits, more holidays
-
University of Gothenburg can be found on the university's doctoral student pages. https://www.gu.se/en/doctoral-studies We offer The University of Gothenburg is a state authority, which means special benefits
-
such as process modelling, thermodynamics, heat and mass transfer, process dynamics and control, optimization or energy-system analysis, and you are interested in applying these disciplines to Power-to-X
-
span broad research areas in metallic and ceramic materials (high-temperature intermetallic, space materials, high-strength steels, porous ceramic materials, and materials intended for energy recovery
-
, we use scalable, industry-relevant processes that ensure rapid transfer of our research results to industry. Thus, our work contributes significantly to closing the gap between basic science and
-
flexible assets, will continue to grow. DERs such as PVs, electric vehicles, and electric heat pumps, complemented by smart buildings, will unlock the required energy flexibility at the LV level to address