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sustainable operations in space. In response to this, ESA introduced its Zero Debris approach, which aims to limit the production of debris in Earth and lunar orbits by 2030. As a first step, ESA’s Space Debris
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applications. This includes, but is not limited to, stochastic differential equations, stochastic partial differential equations, variational and geometric methods, probabilistic numeric, optimal transport, and
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amplitude of changes in polar regions, the associated processes and the potential impacts: ice-sheet, glacier and ice-cap dynamics, ice shelves-ocean-atmosphere interactions, snow processes and surface mass
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sea-urchin spine micro-architectures and using these as templates for multifunctional, mechanically efficient structures. In parallel, ACT researchers have explored spider-inspired soft actuators