Sort by
Refine Your Search
-
Listed
-
Employer
- Delft University of Technology (TU Delft)
- European Space Agency
- Leiden University
- Utrecht University
- Eindhoven University of Technology (TU/e)
- Erasmus MC (University Medical Center Rotterdam)
- Radboud University Medical Center (Radboudumc)
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- University Medical Center Utrecht (UMC Utrecht)
- Wageningen University & Research
-
Field
-
nucleation pathways related to different emissions characteristics at the engine exhaust. The collected data would be helpful to validate the microphysics models for ice nucleation process, hence clarifying
-
Infrastructure? No Offer Description Use real-world vessel data, agent-based modelling and digital twin technology to accelerate the transition toward zero-emission inland shipping. Job description The
-
groups. The theoretical methods include stochastic modelling, MD simulation, and Bayesian inference; the position will also include joint collaborative projects with other group members and our
-
to lead TU Delft's contribution to the Stritvaiz project, which transforms a former inner-city Amsterdam gas station into a multifunctional mobility and energy hub combining fast-charging, energy
-
expertise in DNA damage and transcription stress (van Sluis et al., 2026, Nature Reviews Molecular Cell Biology) with advanced human neuronal differentiation models and functional neurobiology. Within
-
-validated mouse models for various leukodystrophies offer opportunities to study myelin swelling and remodeling in disease contexts, taking an important step towards a better understanding of this
-
interested in developing innovative behavioural models to understand how urban mobility policies shape human behaviour, exposure, and environmental outcomes? Job description We are seeking a highly motivated
-
layer for gene expression control and numerous other processes in the cell. In this context, individual and combinatorial modifications guide spatiotemporal recruitment of regulatory factors to specific
-
. To give you an idea, one of the scientific challenges is to understand how generated electron-hole pairs can transfer their energy to the luminescence centres. The strongest possible absorptions in
-
to lanthanide molecular magnets. While the SFX2C-1e model has been recently used to model core-level spectra, its combination with EOM-CC for molecular magnets has lagged behind. We will link EOM-CC to SFX2C-1e