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the very beginning of life. Are you eager to discover the molecular mechanisms that explain why these first cell divisions in early life are very error-prone? Do you want to develop your skills
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process conditions, feedstock variability, and application-driven objectives.
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. The project focuses on five interlinked objectives related to the above-mentioned aims. The research spans field observations, laboratory experiments and mechanistic models. The project team consists of two PhD
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to human being. From idea to solution. Driven by a deep-rooted desire to understand our environment and discover its underlying mechanisms, research and education at the ME faculty focusses on fundamental
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Mechanical Engineering From chip to ship. From machine to human being. From idea to solution. Driven by a deep-rooted desire to understand our environment and discover its underlying mechanisms, research and
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-changing science that improves healthcare from the very beginning of life. Are you eager to discover the molecular mechanisms that explain why these first cell divisions in early life are very error-prone
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the properties they share. An important part of the work will be to find, test and develop digital tools to assist in classification, annotation and network building. The specific research project of the PhD will
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sensors for measuring the speed of liquids find application in many industrial setups where the dosage of a liquid must be controlled, such as food processing, drug production, microchips and solar panels
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. Faculty Mechanical Engineering From chip to ship. From machine to human being. From idea to solution. Driven by a deep-rooted desire to understand our environment and discover its underlying mechanisms
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, sustainability objectives and future uncertainties into a unified decision-making framework. The candidate will develop probabilistic modelling and stress-testing approaches, including Monte Carlo simulations and