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mechanics at the atomic scale. In this project, the University of Groningen will develop an array of state-of-the-art machine learning potentials for multi-component alloy systems that are relevant
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” (GGS), a PhD position for the period of 4 years is available in the context of modelling green steel mechanics at the atomic scale. In this project, the University of Groningen will develop an array
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chemical composition. The use of graphene also inherently proposes a solid-state alternative to biopores. We will leverage the outstanding electrical, chemical and mechanical properties of monolayer graphene
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decomposition processes under controlled conditions to unravel the mechanisms of peat decomposition, identify the main actors, and predict the interaction between these actors and their environment. This work
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systems. These contracts have two desired features: they should i) be capable of expressing rich specifications; and ii) come equipped with a theory of compositional analysis that allows for translating
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equipped with a theory of compositional analysis that allows for translating component-level specifications to system-level specifications. This PhD position will focus on the use of contracts
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similar, with a research topic relevant for this project. Affinity with the topic of mechanical properties, fatigue of metallic, composite and polymer structures and materials. A desire to acquire the new
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with the topic of mechanical properties, fatigue of metallic, composite and polymer structures and materials. A desire to acquire the new skills and knowledge needed to complete the project. A critical
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to shape human activity and facilitate the preservation or even the desired expansion of the quality of life. This project aims at reusing components from existing steel and steel-concrete composite
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composite materials exhibit highly specialized heterogeneous architectures, finely tuned to meet functional demands. Examples include plant cellulose structures and mineralized collagen in bone and teeth