Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
- University of Groningen
- Radboud University
- Leiden University
- University of Twente
- Delft University of Technology (TU Delft); Delft
- Delft University of Technology (TU Delft)
- Eindhoven University of Technology (TU/e)
- University of Twente (UT)
- Eindhoven University of Technology (TU/e); Eindhoven
- Utrecht University
- Wageningen University and Research Center
- University of Twente (UT); Enschede
- Erasmus University Rotterdam
- University of Amsterdam (UvA)
- University of Amsterdam (UvA); Amsterdam
- University of Groningen; Groningen
- Leiden University; Leiden
- Wetsus - European centre of excellence for sustainable water technology
- Maastricht University (UM)
- Maastricht University (UM); Maastricht
- Vrije Universiteit Amsterdam (VU)
- CWI
- Wageningen University & Research
- Vrije Universiteit Amsterdam (VU); Amsterdam
- DIFFER
- DIFFER; Eindhoven
- KNAW
- Radboud University; Nijmegen
- Utrecht University; Utrecht
- AMOLF
- Erasmus University Rotterdam (EUR)
- Leiden University; 's-Gravenhage
- Radboud University Medical Center (Radboudumc); Nijmegen
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- Tilburg University
- AcademicTransfer
- Amsterdam UMC
- Amsterdam UMC; Amsterdam
- Delft University of Technology
- Erasmus MC (University Medical Center Rotterdam)
- Erasmus University Rotterdam (EUR); Rotterdam
- Radboud Universiteit
- Radboud University Medical Center (Radboudumc)
- Radix Trading LLC
- Tilburg University; Tilburg
- Universiteit van Amsterdam
- University of Amsterdam
- VU Amsterdam
- Wageningen University & Research; Wageningen
- 39 more »
- « less
-
Field
-
wafers for compliance with the design requirements and the absence of production errors. This is the domain of wafer metrology. By illuminating a wafer and measuring the scattered fields, the scattering
-
programming applications (e.g., experimental design, machine learning for science). We do so by bringing together a diverse team of PhD candidates who will focus on three key areas: Probabilistic and
-
problems with a multidisciplinary character. Proficient in written and oral English (C1; above IELTS 7 or equivalent) You are able to design and execute your own research You have strong communication skills
-
of transitions. This research setting builds on knowledge and theories at the intersection of innovation studies, construction management, and public management with many opportunities to collaborate with other
-
and multiscale coupling between the evaporation-driven hydrodynamics and physicochemical interactions between the dispersed phases (e.g. solvents, particles, salts, polymers) is key for determining
-
) and systems (e.g., high performance, functional array programming DSLs) to tackle challenging probabilistic and differentiable programming applications (e.g., experimental design, machine learning
-
experiment. These materials adapt their computations over time, reducing energy use and improving efficiency. Partnering with Toyota and Demcon TSST, SMIP will showcase this innovation through a self-learning
-
or functions are primarily responsible. You will use DNA sequencing technology to characterize the microbial communities associated with these functions. In addition, you will design and develop a new method to
-
crystallization. The intricate and multiscale coupling between the evaporation-driven hydrodynamics and physicochemical interactions between the dispersed phases (e.g. solvents, particles, salts, polymers) is key
-
also design medical research experimental protocol for both healthy control population and target patient population, apply for the protocol’s ethical approval (please check this website for more