Sort by
Refine Your Search
-
materials. Through the combined development of tailored bio-based electrolytes, the study of their performance with state-of-the-art electrode chemistries, and investigation of electrode-electrolyte
-
to the development of state-of-the-art nuclear-reaction models and evaluated nuclear-data libraries, supporting safe, reliable, and competitive technologies for both existing and future nuclear-energy systems, as
-
state-of-the-art genomic and epigenomic approaches to study chromatin dynamics in human cells and stem cell-derived neuronal models. The project will generate fundamental insights into the chromatin-based
-
performance of materials and devices. Contribution to scalable fabrication of multi-cell devices and their validation using representative low-grade heat sources. Analysis and interpretation of experimental
-
optimization of the electrical, electrochemical, mechanical, and energy-conversion performance of materials and devices. Fabrication and validation of multi-cell devices under representative low-grade heat
-
-scale datasets generated in the Piazza laboratory, public structural proteomics datasets, state-of-the-art mass spectrometry infrastructure at SciLifeLab, and high-performance computing resources
-
methods to study interactions between humans and the built environment. The lab provides a cutting-edge experimental platform that integrates immersive virtual environments with a state-of-the-art climate
-
bioinformatics. UPSC provides access to state-of-the-art infrastructure for plant transformation, sequencing, computational analysis and advanced microscopy within a highly collaborative and interdisciplinary
-
on community ecology. Researchers have access to excellent glasshouse and climate-controlled facilities, fully state-of-the-art molecular labs and a high-performance computing cluster (UPPMAX). The Department