Sort by
Refine Your Search
-
optimization, and computational social choice to address critical problems, including: Voting systems: Investigate the Margin of Victory, winner robustness, and resilience against attacks in electoral processes
-
(coordinate measurement, determination of errors and uncertainties). Additive manufacturing of metals, polymers and composite materials (topological optimization, designs of bionic structures and lattice
-
(coordinate measurement, determination of errors and uncertainties). Additive manufacturing of metals, polymers and composite materials (topological optimization, designs of bionic structures and lattice
-
vitro and in vivo models, based on coculture with T-lymphocytes or stromal cells, mimic some aspects of the natural microenvironment but have limitations. This research aims to develop and optimize models
-
the natural microenvironment but have limitations. This research aims to develop and optimize models replicating the lymphoid microenvironment to study new therapeutic strategies, including drugs targeting CLL
-
=, including external effects due to natural events and security, fire safety engineering and chemical stability (eg runaway reaction). Artificial intelligence: Predictive modelling and process optimization
-
: Predictive modelling and process optimization, machine learning algorithms, complex systems and AI-powered risk assessment models for zero-carbon fuels and for hydrogen production, distribution/delivery, and
-
). Artificial intelligence: Predictive modelling and process optimization, machine learning algorithms, complex systems and AI-powered risk assessment models for zero-carbon fuels and for hydrogen production
-
stability (eg runaway reaction). Artificial intelligence: Predictive modelling and process optimization, machine learning algorithms, complex systems and AI-powered risk assessment models for zero-carbon