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personal development. You can count on an enjoyable job within the socially relevant world of education and research. The University's challenging and international work environment is located just steps
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, biophysics, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D self-organization of active particles. § Fabricate and characterize light-driven microswimmers
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the Leiden Institute of Advanced Computer Science (LIACS). As a team, we develop cutting-edge techniques for advanced computational imaging systems, combining expertise from Mathematics (Inverse Problems
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receiving a diagnosis, while the current gold-standard CFT test is invasive, costly, painful, and limited available. In this PhD project, you will help develop the first blood-based test for ANOCA, combining
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inputs? And what do these dynamic, evolving interactions mean for our wellbeing? You will develop a novel methodology that combines Materials Experience thinking with biosensing, together with a toolkit
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Network, aims to develop an energy-efficient compute-in-memory (CIM) architecture using gain-cell memory for real-time edge learning, addressing power, latency, and memory bandwidth issues with reliable
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innovations in mechano-driven cartilage tissue engineering? Are you driven to develop novel in silico frameworks that deepen mechanistic understanding of tissue growth and inform in vitro experiments? Then you
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) composition of the rejection water typically treated in these reactors. Develop and test mitigation measures in a full scale deammonification reactor. Pro-actively communicate your research findings with
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devices comprising hundreds of atoms and multiple magnetic centers, pose a huge dilemma in quantum chemistry between system size and complexity. To overcome this challenge, we will develop a new quantum
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team in developing a new type of qubit based on Majorana bound states in Kitaev chains. This project will develop Majorana qubits in longer Kitaev chains, thereby reaching topological protections. We