-
evolution, polyploidy, and algal biology and evolution. The candidate will join a highly collaborative and international research environment, with strong connections to major polyploidy initiatives
-
evolution, polyploidy, and algal biology and evolution. The candidate will join a highly collaborative and international research environment, with strong connections to major polyploidy initiatives
-
important targets in modern medicine. Despite major advances in kinase inhibitor development, many regulatory mechanisms remain poorly understood, particularly those involving allosteric and non-catalytic
-
of transmembrane β-barrel nanopores. The group provides an interdisciplinary environment where computational method development is closely integrated with experimental validation and large dataset
-
of transmembrane β-barrel nanopores. The group provides a highly interdisciplinary environment where computational method development is closely integrated with experimental validation. The successful
-
of transmembrane β-barrel nanopores. The group provides an interdisciplinary environment where computational method development is closely integrated with experimental validation and large dataset
-
of transmembrane β-barrel nanopores. The group provides a highly interdisciplinary environment where computational method development is closely integrated with experimental validation. The successful
-
, such as FWO PhD fellowships. Access to state-of-the-art facilities and training in advanced techniques. Opportunities for career development, networking, and mentorship. A highly stimulating and