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DFT modelling, are a plus. Project description and responsibilities The position entails the synthesis of new ruthenium-based photocages. You will be integrated in the MCBIM group (https
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at the interface of applied mathematics and process optimization in the medical laboratory context. Your contributions will be to gain mathematical insights and ensure that these translate into real-world impact
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Research and Logistics group at Wageningen University, the Zero Hunger Lab at Tilburg University, and four industry partners. In this project, you will develop and advance optimization models and algorithms
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the visual system. The goal is to create a robust mechanistic neural network model of the visual system that not only mimics its processing capabilities but also its adaptability, leveraging early
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on software and other IT products. We also offer access to additional employee benefits through our Terms of Employment Options Model. In this way, we encourage our employees to continue to invest in
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, tailored, complex materials such as advanced polymers or polymeric formulations, catalysts, mechatronic devices and software and algorithms. Design, control and modelling and analyses complement
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development. Our individual choices model gives you some freedom to assemble your own set of terms and conditions. For international spouses we have set up a dual career programme. Candidates from outside
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record proven by relevant experience, publications, etc. The applicant is expected to have: MSc degree in Computer Science, Electrical Engineering, Cryptography, Applied Mathematics, or related field
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to commence at the earliest possible date and no later than September 2025. The project focuses on establishing rigorous mathematical results for random (geometric) graphs, as well as on modeling realistic real
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of coalgebraic session types, which model the behaviour of communication channels. Building on this, you will develop a formal notion of causality by connecting behavioural maps of extended coalgebraic sessions