Sort by
Refine Your Search
-
Category
-
Employer
- Delft University of Technology (TU Delft)
- University of Amsterdam (UvA)
- Wageningen University & Research
- Eindhoven University of Technology (TU/e)
- Radboud University
- Utrecht University
- University of Twente (UT)
- Leiden University
- Maastricht University (UM)
- University of Groningen
- KNAW
- Amsterdam UMC
- DIFFER
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- University of Twente
- AMOLF
- Amsterdam UMC, location VUmc
- HFML-FELIX
- Sanquin Blood Supply Foundation (Sanquin)
- TU Delft
- University Medical Centre Groningen (UMCG)
- 11 more »
- « less
-
Field
-
Are you fascinated by how machine learning can enhance control without compromising safety or stability? As a PhD candidate, you will develop scalable methods for expressive and flexible neural
-
Job description Recent trends in Controlled Environment Agriculture (CEA) development, design, and operations related to energy saving and greenhouse gas emission reduction, are mainly focused
-
23 Sep 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Engineering » Control engineering Engineering » Systems engineering Researcher Profile First
-
investigate CO₂ desublimation under controlled cryogenic conditions. The project is primarily experimental, supported by modelling and data analysis. You will design, build and operate a cryogenic experimental
-
into high-purity powders. Using mechanochemical processing, you will investigate and control phase formation, particle size distribution, morphology, and flowability. You will then establish additive
-
to address that gap. You will develop and optimise routes for converting silicon-rich waste streams into high-purity powders. Using mechanochemical processing, you will investigate and control phase formation
-
Thermal Conversion and Storage group at the University of Twente, you will investigate CO₂ desublimation under controlled cryogenic conditions. The project is primarily experimental, supported by modelling
-
and more effective therapies. However, their successful application requires chemical reactions that convert prodrugs into their active forms in a controlled manner. The aim of this project is therefore
-
. You will use human in vitro models, including astrocytes and brain organoids generated from induced pluripotent stem cells (iPSCs) of people with MLC and healthy controls. You will investigate disease
-
information and affective processing, decision-making by patients and clinicians, approach-avoidance tendencies, cognitive control, emotion regulation, motivation, and executive functioning.