Sort by
Refine Your Search
-
the requirements and conduct theoretical investigation into advanced space debris mitigation approaches, such as those based on risk metrics [1], and incentive mechanisms under different technological and regulatory
-
well as concepts based on seed dispersal mechanisms for planetary reentry/exploration. The overarching goal of this research line is to develop mechanistic and computational models that capture how biological
-
flows, flow matching, neural ODEs as well as graph neural networks. Looking forward, the aim is to develop new mathematical and computational paradigms that can deepen our scientific understanding of deep
-
-driven dynamical systems, perturbative theories in celestial mechanics, symbolic regression, inverse methodologies via differentiable simulations, efficient high-dimensional numerical quadrature and more
-
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