Sort by
Refine Your Search
-
systems developed in the SAM3 project in terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and
-
to further develop concepts in nonlinear model reduction Possible research directions include the development of nonlinear modelling and control approaches for fluid-structure interactions, material with
-
on electrochemical and structural characterization of battery materials and cells, combined with muon-based experiments. You will design and carry out experiments to identify reaction pathways and degradation
-
, proactive and able to work independently and reliably. Joining a new and dynamic team and working on highly topical issues Involvement in the research group's projects as well as national and international
-
terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and Engineering (EDMX) of EPFL (Lausanne
-
behavioural interventions in healthcare. However, current conversational AI systems remain limited in their ability to operate reliably across diverse clinical contexts. They often lack generalisability
-
with colleagues in related fields. Moreover, the Biozentrum offers excellent support from various core facilities with expert staff, and a structured PhD program. Our group embraces diversity and equal
-
PhD Position in Ancient History: The People Behind the Villa: Life, Labour, and Death in Roman Italy
disease, mortality patterns, kinship structures, migration and mobility, ancestry, childhood, labor, and social inequality. The doctoral researcher will engage critically with broader debates concerning
-
heterostructures under ultra-high vacuum conditions. GNRs are emerging quantum materials whose electronic structure, topology, and spin states can be engineered with atomic precision, but many reactive GNRs degrade
-
propagation solely through spatial structures, we develop THz time-varying photonic systems based on subwavelength waveguides, where ultrafast excitations modify the optical properties of a material on the