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Field
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Identifying and validating models for complex structures featuring nonlinearity remains a cutting-edge challenge in structural dynamics, with applications spanning civil structures, microelectronics
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The emergence of 3D concrete printing (3DCP) is reshaping the future of construction, offering unprecedented design freedom, material efficiency, and automation. Unlike conventional concrete casting
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provide powerful tools to improve the quality and efficiency of data-driven models. In parallel to the development of data-driven models for dynamical systems with geometric structures such as Hamiltonian
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the interaction between the structure of CFM and dynamic performance of the flow. The aim will be achieved through the following objectives: Develop a novel approach to investigate the fluid-solid coupling effect
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evolutionary insights with state-of-the-art genomic tools, EvoMG-DN seeks to establish EvoMG as a structured and impactful discipline in Europe. The network aims to train the next generation of interdisciplinary
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knowledge gaps. The project involves both linear and nonlinear dynamics modelling and analysis, as well as experimental testing. An equivalent test structure will first be constructed in the vibration
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environments, in both crystalline and disordered materials. It can be used to determine atomic-scale structures of organic and inorganic systems as well as their dynamics. Here, the developed methods will have
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Energy Applications Energy Generating Coastal Defences Ceramic-based Thermal Storage Structures Structural Health Monitoring of Composite Structures Non-Linear Dynamic Behaviour of Composite Structures
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including: * Algorithmic game theory * Approximation algorithms * Automata and formal languages * Combinatorics and graph algorithms * Computational complexity * Logic and games * Online and dynamic
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combining evolutionary insights with state-of-the-art genomic tools, EvoMG-DN seeks to establish EvoMG as a structured and impactful discipline in Europe. The network aims to train the next generation of