Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
- Delft University of Technology (TU Delft)
- Wageningen University & Research
- Maastricht University (UM)
- University of Amsterdam (UvA)
- AMOLF
- ARCNL
- Amsterdam UMC
- Leiden University
- Radboud University
- TU Delft
- Tilburg University
- University of Groningen
- Utrecht University
- Vrije Universiteit Amsterdam (VU)
- 4 more »
- « less
-
Field
-
education, clinical teachers play an essential role in coaching, for example, by encouraging residents to critically think about their clinical performance and how this can be improved. Yet, the specific
-
supplying the insights needed to convey the value of AI solutions to partners & clients; leading projects in which you and your team design and develop new AI solutions. Off course translating research
-
learning pipelines for multilayer segmentation and nanoscale transistor classification from microscopy images; (b) Designing graph-based inference models capable of reconstructing higher-level logical blocks
-
to) approaches such as materials experience thinking and soma design. A combination of technical inventiveness, analytical thinking, and a strong design research sensibility, with proven experience in prototyping
-
expected outcome is an experimentally tested framework for designing photonic information-processing systems that exploit phase-transition physics. Qualifications You have an MSc degree in physics, optics
-
of ecosystem services. Your duties and responsibilities include: Develop a Research Proposal and a Training and Supervision Plan, to structure the PhD trajectory Advancing conceptual thinking by linking farm
-
countries (HIC). The airm of this PhD project is to understand how E. coli colonization contributes tot he risk of diarrheal disease and infections with AMR and use this knowledge to design interventions
-
research by the SCP, “Between Sustainable Thinking and Sustainable Action”). The PhD candidate will receive a full-time appointment for 2 years at the RUG in Groningen (years 1 and 2) and subsequently a full
-
design rules to understand their chemistry and physics. You will combine coarse-grained and atomistic simulations with surrogate models and experimental insights (with Dr. Baumgartner) to understand
-
holography, structured-light and fringe projection, deflectometry, pattern tracking, high-speed imaging and thermography. Complementary photonic sensing approaches, such as fibre Bragg grating sensors, may