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high performance screening and diagnostics devices to meet the expected clinical demand. Are you inspired by this challenge and excited to work on the boundary between biomedicine and technology? In
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. Impact: Transform weather and climate modeling in the tropics. Job description Challenge, Change, Impact Warm tropical waters fuel intense storms, yet the fine scale exchanges of heat, momentum and
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optical trapping in the form of optical lattices and/or optical tweezers. We have developed a high-resolution multi-wavelength objective that will be used to achieve better sensitivity for both species. We
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. In this project we will continue development of a new high-throughput method that will speed up and improve such predictions. We will further develop a combination of automated patch clamping and
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rinse solution. With our research team, you will explore alternative porous electrode materials and redox couples to improve performance, durability, and cost of acid-base technology. You will investigate
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Mathematics (Inverse Problems), Computer Science (Machine Learning, Computer Vision, Efficient Algorithms and High-Performance Computing), and Physics (Image Formation Modelling). Your project is part of
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Mathematics (Inverse Problems), Computer Science (Machine learning, Efficient Algorithms and High-Performance Computing), and Physics (Image Formation Modelling). Your project is part of the NXTGen High-tech
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command of German will be considered an advantage. Additional Information Benefits We will give you a temporary employment contract (1.0 FTE) of 1.5 years, after which your performance will be evaluated
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implementation topology and its power, performance and area. Collaborate with team members in NanoComputing Research Lab. Communicate clearly, both written and verbal. Publish research findings in high-impact
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high-impact journals and present at international conferences. Where to apply Website https://www.academictransfer.com/en/jobs/357571/phd-on-mixed-signal-circuit-des… Requirements Specific Requirements A