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Titlebook: Civil and Environmental Engineering for the Sustainable Development Goals; Emerging Issues Manuela Antonelli,Gabriele Della Vecchia Book‘‘‘

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Cold Atom Interferometry in Satellite Geodesy for Sustainable Environmental Management,oring sea levels. This paper aims to investigate the possible implementation of cold atom sensors for future satellite gravity missions, which would improve our current knowledge of the Earth’s gravity field and contribute into the sustainable environmental management.
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Characterization and Monitoring of an Unstable Rock Face by Microseismic Methods,ls. However, it is still a challenging task due to the heterogeneity of fractured rock slopes. The main purpose of this thesis is to address the issues related to event localization for microseismic monitoring strategy applied to the unstable rock face.
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2191-530X tal and Civil Engineering, originating from outstanding doctoral dissertations discussed at Politecnico di Milano in 2021. The advanced innovative insights provided are presented with reference to the relevant sustainable development goals (SDGs), hoping that scientists, technicians and decision mak
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Analysis of Remotely Sensed Data,cent metamaterial technologies allow to dramatically increase the energy available for harvesting, and the operational bandwidth. A large-scale application of metamaterial-based energy harvesting could increase the sustainability in the global energy mix as well as provide improvement in energy efficiency.
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Remote Sensing of Clouds and Precipitationments induced by the embankment construction process is presented and validated against finite difference numerical analyses. The model is used to optimise the design of both piles and geosynthetic, and applied to a practical example, where the mass of CO. saved by designing geosynthetics to reduce the pile number.
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Autonomous Wireless Sensors via Graded Elastic Metamaterials,cent metamaterial technologies allow to dramatically increase the energy available for harvesting, and the operational bandwidth. A large-scale application of metamaterial-based energy harvesting could increase the sustainability in the global energy mix as well as provide improvement in energy efficiency.
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