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architecture. It will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modeling techniques to create a versatile Acoustic Digital Twin, which will be combined
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different community contexts, and how these link with overall ecosystem patterns, functional properties and environmental context. Additionally, you will be able to use community databases of trait data and
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Award (TRDA) scheme. Nature-based solutions (NBS) use the properties of nature – for example, restoring forests, wetlands, or grasslands – to address multiple sustainability challenges, from capturing
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architecture. This project will use state-ofthe- art robot-aided acoustic measurements and employ advanced computational and acoustic modelling techniques to create a versatile Acoustic Digital Twin, which will
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architecture. This project will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modelling techniques to create a versatile Acoustic Digital Twin, which will
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sonic architecture. This project will use state-ofthe- art robot-aided acoustic measurements and employ advanced computational and acoustic modelling techniques to create a versatile Acoustic Digital Twin
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experiences and sonic architecture. This project will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modelling techniques to create a versatile Acoustic