🪨 How Archaeologists Actually Date Things
An interactive 3D timeline comparing the effective age ranges of radiocarbon dating, potassium-argon dating, and dendrochronology, with live decay and tree-ring instruments.
A 3D log-scale timeline that lays radiocarbon dating, potassium-argon dating, and dendrochronology side by side, showing exactly which method can date a sample of a given age — and where each one runs out of road.
🔬 What It Demonstrates
Three glowing lanes mark each method's effective age range on a logarithmic scale from 10 to 5,000,000 years. A charcoal sample dims as its carbon-14 decays, a mineral crystal accumulates argon gas over time, and a tree-ring disc reveals more rings the older the sample gets.
🎮 How to Use
Drag the sample-age slider to see which lanes light up as "usable" for that age. Use the method dropdown to spotlight one technique, or turn on auto-sweep to watch the whole timeline play out on its own.
💡 Did You Know?
Radiocarbon dating only works on formerly living material and stalls out after about nine half-lives (~55,000 years), while potassium-argon dating needs enough time for argon gas to build up, so archaeologists routinely combine several methods on the same site.
An interactive 3D timeline comparing the effective age ranges of radiocarbon dating, potassium-argon dating, and dendrochronology, with live decay and tree-ring instruments.
3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install