Applied Forensic Technology Research Group
The Applied Forensic Technology Research (AFTeR) Group is interested in all aspects of the application of technology within the field of forensic work. A particular focus is on audio and video forensics.
The Applied Forensic Technology Research (AFTeR) Group is interested in all aspects of the application of technology within the field of forensic work. A particular focus is on audio and video forensics.
Control and Logistic group have conducted research and implementation on Control, Optimization and Industrial systems for four decades.
The Absolute Chemistry Research Group is dedicated to practices of Outreach, Public Engagement and Widening Participation.
The Galaxy Formation and Evolution Research Group looks at population studies of dwarf galaxies up to the most massive clusters of galaxies, supermassive black holes and detailed modelling of the internal structure of galaxies. Discover more about our expertise, who we work with and meet the researchers.
Within the time domain astrophysics research group, we are involved in major observational survey projects. We work on a variety of explosive transients, including galactic and extragalactic novae, type la supernovae, core collapse supernovae, and gamma rays bursts. The Liverpool Telescope is the workhorse of the group. Find out more about our research.
The computational and theoretical galaxy formation group within the Astrophysics Research Institute uses state-of-the-art simulations on supercomputing facilities. Find out more about our research.
By studying the gas and stars that shape the Milky Way as well as other galaxies in the local Universe, we can understand the life cycles of stars like our Sun, unravel the chemical enrichment history of the universe, and probe the existence of black holes across a wide mass spectrum.
International collaborations
Explore our pioneering use of omic techniques to study muscle adaptation, revealing new insights into muscle growth, injury prevention, and recovery in athletes.
Discover how Dynamic Proteome Profiling reveals changes in protein quality in human muscle as we age, providing insights into improving lifelong health and muscle ageing.