Sort by
Refine Your Search
- 
                Listed
 - 
                Employer
- Delft University of Technology (TU Delft)
 - Delft University of Technology (TU Delft); Delft
 - Delft University of Technology (TU Delft); yesterday published
 - European Space Agency
 - University of Groningen
 - Maastricht University (UM)
 - Maastricht University (UM); Maastricht
 - The Netherlands Cancer Institute
 - The Netherlands Cancer Institute; Amsterdam
 - University of Amsterdam (UvA)
 - University of Amsterdam (UvA); today published
 - Wageningen University & Research
 - 2 more »
 - « less
 
 - 
                Field
 
- 
                
                
                
Research Infrastructure? No Offer Description Job description You will explore hardware/algorithm co-design for NeuroAI, simultaneously taking into account scalability inspired by modern AI workloads, as
 - 
                
                
                
, algorithmic aspects, such as Parallelization, Fisher Information and Maximum Likelihood Estimation, with optical theory. Department of Imaging Physics Research in the department of Imaging Physics is aimed
 - 
                
                
                
. The work spans the full pipeline: establishing a rotating-bearing test bench; instrumenting it with different sensing modalities such as vibration, acoustic, and thermal sensing; and developing machine
 - 
                
                
                
increasing environmental awareness. However, most existing hearing aid algorithms optimize for only one of these objectives at a time, often at the expense of the others. To enhance hearing aid performance
 - 
                
                
                
advanced computer vision, dedicated lighting systems, optical communication, and robust control and guidance algorithms. You will work on: Design and implement computer vision algorithms for accurate landing
 - 
                
                
                
on wind turbines and ships. This involves advanced computer vision, dedicated lighting systems, optical communication, and robust control and guidance algorithms. You will work on: Design and implement
 - 
                
                
                
, reconstruction algorithms, and data acquisition techniques to ensure high-quality inputs. Collaborate with clinicians: Work with medical specialists to validate the clinical utility of your algorithms and ensure
 - 
                
                
                
ultrasound physics, reconstruction algorithms, and data acquisition techniques to ensure high-quality inputs. Collaborate with clinicians: Work with medical specialists to validate the clinical utility of your
 - 
                
                
                
applications in the media change journalism, the public sphere, civic engagement and economic competition. We will develop and test new AI-applications to help solve problems such as disinformation, algorithmic
 - 
                
                
                
AI-applications to help solve problems such as disinformation, algorithmic bias and filter bubbles. Together with our partners we will also (co)-create new ethical and legal frameworks for responsible