Workers at the world’s largest atom smasher are breaking ground on a performance-enhancing upgrade that will allow scientists to conduct even bigger and better physics experiments.
When two bunches of protons traveling close to the speed of light collide, artistic duo Semiconductor take that data and turn it into an immersive art installation.
Standing outside in the dark and the cold on the east coast of Scotland, 500 people let out a communal gasp as a huge screen was illuminated on the side of the Torness nuclear power station.
Supersymmetry. Dark matter. Extra dimensions. Scientists have proposed the International Linear Collider (ILC), a next-generation project designed to smash together electrons and their antiparticles at a higher-than-ever energy, to learn more about these and other mysteries of the universe.
Scientists since the time of Sir Isaac Newton (and before) have built their work on the work of those who preceded them. Newton famously described this by saying, “If I have been able to see farther, it was only because I stood on the shoulders of giants.”
Upon arriving for work at the laboratory of Masatoshi Koshiba at the University of Tokyo, Yoji Totsuka handed me a fax telling of a supernova in the Large Magellanic Cloud, picked up by optical telescopes.
Unveiling the three-dimensional structure of proteins thrills scientists. While the potential for understanding the folding and function of enzymes is truly exciting by itself, exploring macromolecule structures also satisfies a more fundamental urge: to see the invisible.