Sort by
Refine Your Search
-
Listed
-
Employer
- Delft University of Technology (TU Delft)
- Eindhoven University of Technology (TU/e)
- Wageningen University & Research
- Maastricht University (UM)
- University of Groningen
- Utrecht University
- ARCNL
- Sanquin Blood Supply Foundation (Sanquin)
- DIFFER
- Leiden University
- University of Amsterdam (UvA)
- University of Twente (UT)
- Amsterdam UMC, location VUmc
- KNAW
- Prinses Máxima Centrum
- Radboud University Medical Center (Radboudumc)
- University of Twente
- 7 more »
- « less
-
Field
-
innovative formulation strategies for lipid-based drug delivery nanoparticles, with a particular focus on the design and optimization of externally triggerable lipid nanomedicines. Combining molecular modeling
-
developments, you will work closely with the other PhD, postdocs, engineers in the lab, and other collaborators from TUM and ETH, to establish a digital twin for construction, and optimize CAML hardware
-
concepts for spot size converters (SSCs) on our Indium Phosphide (InP) Photonic integration platform Developing and optimizing a manufacturing process for the SSC in the Nanolab cleanroom at TU/e
-
. You are independent, self-motivated and eager to learn. You are keen to work with partners to link real-world challenges to fundamental research questions. Desirables: Experience with optimization
-
. Desirables: Knowledge of electrical distribution systems, power flow, and congestion management. Experience with optimization methods and scheduling problems as well as optimization packages such as Pyomo. You
-
research questions. Desirables: Experience with optimization methods and scheduling problems as well as optimization packages such as Pyomo. You enjoy programming and have experience with Python, machine
-
such personalization may improve donor health and optimize blood and plasma collection, it also raises important ethical, legal and societal questions: Which personal data may ethically be used in donor management? How
-
systematic optimization strategies to maximize yields of desired products. A key aspect of the project is understanding and improving catalyst stability, including identifying deactivation mechanisms and
-
to maintain the tunnel stable. At depths of several hundred metres, validated design guidelines for this combination of challenges do not yet exist, which limits optimal decision-making. This PhD
-
the opportunity to perform experiments in Maastricht and at the RIVM, gaining experience in respiratory toxicology and in designing optimal in vitro experiments. You will also have opportunities to build an (inter