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objectives. Quantifying Soil-Structure Interaction: A range of theoretical studies will be undertaken to quantify the effect of constructing a foundation in the vicinity of an underground railway tunnel
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The Department of Soil Chemistry and Pedology at the Institute of Soil Science and Land Evaluation of the University of Hohenheim (Germany) is seeking to fulfil the position of a research associate
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interacts with construction and design teams in the field, how it processes change orders, etc. Additionally, how it prepares for and responds to incidents, how it captures and uses lessons learned, and
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are common examples of mechanical interactions between flexible fibers and rigid grains. In these cases of fluid-structure interactions, the evolution of fiber shape results from a balance between internal
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stability affect resulting ground displacements. Using a novel hybrid physical-numerical modelling approach pioneered in Nottingham for tunnel-structure interaction, experimentally quantify the effects
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active controls for controlling the dynamic responses of the wind turbine using the 3D computational model, which takes into account the soil-foundation-structure interaction and the effect of soil
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modelling approach pioneered in Nottingham for tunnel-structure interaction, experimentally quantify the effects that ground displacements have on nearby buildings. Integrate project outcomes into accessible
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Energy Loss Spectroscopy (EELS) experimental data acquired by the German partner of the project on a state-of-the-art instrument. The strategy developed to tackle this challenging problem on the ground of
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The Department of Geoscience, Aarhus University, Denmark invites applications for a full Professorship in Applied Soil Science. We are seeking an international top-level scientist in the field
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24th April 2024 Languages English English English Would you like to be at the forefront of exploring climate-land use-soil interactions? PhD scholarship within Environmental Soil Physics Apply