Sort by
Refine Your Search
-
Employer
- Delft University of Technology (TU Delft)
- Radboud University
- University of Amsterdam (UvA)
- Utrecht University
- Eindhoven University of Technology (TU/e)
- Leiden University
- NIOZ Royal Netherlands Institute for Sea Research
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- Wageningen University & Research
-
Field
-
thermal energy storage using a combination of molecular dynamics and process-scale simulations. By linking molecular-level understanding to engineering-scale performance, you will contribute
-
including dynamical and cosmological horizons, gravitational entropy, Noether charge methods, holographic coarse-graining, chaos, black hole heat engines and quantum field theory in curved space-time. These
-
molecular dynamics simulations, in close collaboration with leading European research institutes and steel industry partners. Job description At TU Delft, you will contribute to a transformative research
-
at the atomic scale, using density functional theory-accurate machine-learned potentials and molecular dynamics simulations, in close collaboration with leading European research institutes and steel industry
-
intensively towards major strategic themes . Our focus is on Dynamics of Youth, Institutions for Open Societies, Life Sciences and Pathways to Sustainability. Sharing science, shaping tomorrow . Working
-
molecular and quantum materials containing lanthanide centers poses significant challenges due to the need to describe spin-orbit coupling (SOC), scalar relativistic effects, and both dynamic and non-dynamic
-
Are you fascinated by marine microbes? Are you interested in the dynamics of microalgal communities, and how they are affected by environmental change? Do you like to combine laboratory experiments with
-
intensively towards major strategic themes . Our focus is on Dynamics of Youth, Institutions for Open Societies, Life Sciences and Pathways to Sustainability. Sharing science, shaping tomorrow . Working
-
molecular and quantum materials containing lanthanide centers poses significant challenges due to the need to describe spin-orbit coupling (SOC), scalar relativistic effects, and both dynamic and non-dynamic
-
their wild relatives over thousands of years. In this project, you will develop and apply computational omics approaches to uncover the molecular mechanisms underlying ancient plant–microbiome