Explore how open source bioimage informatics from University of Dundee is transforming cell biology research through advanced imaging data analysis.
How single molecule tracking reveals nanoscale diffusion secrets in mesoporous materials
Exploring how the study of ancient parasites preserved in archaeological materials reveals insights about human migrations, diets, and civilizations.
Exploring how filament length, finite-extensibility and motor force dispersity regulate stress relaxation and buckling in non-sarcomeric active gels.
Explore how data science and machine learning are revolutionizing our understanding of the glass transition temperature in polymer melts, enabling more precise material design.
Exploring how molecular dynamics simulations validate the GAFF force field for modeling 2,2,2-trifluoroethanol (TFE) in protein studies
Discover the molecular mechanism behind G protein activation and nucleotide exchange, revealing how cellular signals are triggered through dynamic structural changes.
Discover how laser light can control atomic interactions on metal surfaces, transforming attraction into repulsion with implications for nanotechnology and quantum computing.
Exploring how computational modeling reveals thermal conductivity secrets in binary alloys, enabling breakthroughs in electronics, aerospace, and energy technologies.
Discover how machine learning force fields reveal the exotic phase diagram of monolayer water/ice, with applications from desalination to planetary science.