Sort by
Refine Your Search
- 
                Listed
- 
                Category
- 
                Employer
- 
                Field
- 
                
                
                to develop a novel instrument for near real-time detection of airborne pathogens. The position is part of a collaborative and interdisciplinary project involving the Swiss Tropical and Public Health 
- 
                
                
                a novel instrument for near real-time detection of airborne pathogens. The position is part of a collaborative and interdisciplinary project involving the Swiss Tropical and Public Health Institute 
- 
                
                
                transient cellular events into DNA and reads them out by sequencing. Computational challenges include detection of biological signals while applying Record-seq to complex in vivo environments (Schmidt 
- 
                
                
                profile PhD in Computer Science, Data Science, Machine Learning, or a related discipline. Proven experience in computer vision (e.g. image processing, deep learning, object detection, segmentation) and 
- 
                
                
                and NETs. In particular, our project focuses on two main objectives: First, we will develop a net-zero roadmap for the Swiss chemical and pharmaceutical industry, which is currently missing. Second, we 
- 
                
                
                industrial partner, you will design and implement innovative architectures for real-time detection and control of laser processes. This interdisciplinary role combines artificial intelligence and machine 
- 
                
                
                of this position is to establish advanced in vitro simulation models for vascular grafts to assess the performance of nanoengineered antimicrobial and antifouling coatings. Key objectives include: Development 
- 
                
                
                hydrogen detection: development of a field-deployable electrochemical method, benchmarked against lab-based approaches. Area 3 (Contact Person Dr Andreas Borgschulte ) Hydrogen permeation in model systems 
- 
                
                
                establish advanced in vitro simulation models for vascular grafts to assess the performance of nanoengineered antimicrobial and antifouling coatings. Key objectives include: Development of an in vitro model 
- 
                
                
                . Visit our Equal Opportunities and Diversity website to find out how we ensure a fair and open environment that allows everyone to grow and flourish. Sustainability is a core value for us – we are