Sort by
Refine Your Search
-
Listed
-
Employer
- University of Groningen
- Delft University of Technology (TU Delft); Delft
- Eindhoven University of Technology (TU/e); Eindhoven
- University of Twente
- Eindhoven University of Technology (TU/e)
- University of Twente (UT)
- University of Twente (UT); Enschede
- Wetsus - European centre of excellence for sustainable water technology
-
Field
-
This position is part of the NWO KIC Smart Materials project, Smart Materials for Information Processing, in collaboration with the NanoElectronics (NE) group at the University of Twente and the
-
in a 5th generation district heating network. The key weakness of most models currently available and in use is their oversimplified description of physical, dynamic and nonlinear behavior
-
remanufacturing. Help shape the future of sustainable, high-performance production. Information Additive manufacturing (AM) is transforming industrial production by enabling the creation of lightweight, customized
-
such as model-based optimal control and nonlinear reset control. The goal is to push beyond commercial standards, achieving unprecedented sensitivity by overcoming mechanical and interferometric noise
-
Vacancies PhD position on Memristive Smart Materials for Information Processing Key takeaways This position is part of the NWO KIC Smart Materials project, Smart Materials for Information Processing
-
5 Sep 2025 Job Information Organisation/Company Wetsus - European centre of excellence for sustainable water technology Research Field Engineering » Mechanical engineering Engineering » Electrical
-
2 Sep 2025 Job Information Organisation/Company University of Twente (UT) Research Field Computer science » Programming Engineering » Electronic engineering Engineering » Materials engineering
-
models currently available and in use is their oversimplified description of physical, dynamic and nonlinear behavior. The principal goal of the PhD project is to develop component models with a greater
-
are increasingly central to applications in soft metamaterials and bio-implants. Yet, understanding their mechanics in real time remains a major challenge. Their behavior involves nonlinearities, viscous effects
-
systems, focussing on the inclusion of thermal aspects. You can leverage a large body of existing research and software for the efficient simulation of complex geometrically nonlinear mechanical elastic