Rare CO chondrite identified as dinosaur extinction meteorite

Scientists have determined that a rare CO chondrite meteorite struck Earth 66 million years ago, causing the mass extinction that eliminated the non-avian dinosaurs.

Researchers from the University of British Columbia, Paris, Brussels, and Vienna reached this conclusion through analysis of nickel isotopes in a global clay layer deposited after the Cretaceous-Paleogene impact. Their study, published in Science Advances, shows the impactor belonged to an uncommon class of carbonaceous chondrite with low levels of sulfur and other volatile elements.

Dr. Philippe Claeys noted that such meteorites contain far less sulfur than typical samples found on Earth. This evidence points to fine debris ejected into the atmosphere as the primary cause of global cooling rather than sulfur released by the asteroid itself.

The projectile measured 10 to 15 kilometers across and hit at approximately 64,000 kilometers per hour, forming the Chicxulub crater beneath Mexico's Yucatán Peninsula. Carbonaceous chondrites make up only about five percent of meteorites recovered on Earth, with CO chondrites representing an even smaller fraction.

The findings indicate the object likely originated from a distant outer region of the solar system or the asteroid belt near Jupiter.

Makala yanayohusiana

Japanese researchers announced the discovery of asteroid traces in Hokkaido. This is the first confirmation of such traces in Japan. The findings may relate to the extinction of dinosaurs in the Cretaceous period.

Imeripotiwa na AI

The Chicxulub asteroid impact that ended the dinosaur era left the site in what is now Mexico hot enough to sustain underground microbial life for at least 8 million years. New analysis of rock cores shows the hydrothermal system lasted far longer than earlier estimates suggested.

Chinese researchers have confirmed that iron fragments unearthed at the Sanxingdui Ruins were made of pure meteoritic iron. The three corroded pieces, found in Pit No. 7, likely formed an axe or ceremonial weapon. Carbon dating places the artifact in the late Shang Dynasty.

Imeripotiwa na AI

Scientists have described a previously unknown feathered dinosaur species from northwestern China that may explain clusters of broken bird bones at a fossil site.

Jumapili, 19. Mwezi wa saba 2026, 01:34:03

Study links ancient asteroid breakup to Solar System bombardment

Jumapili, 12. Mwezi wa saba 2026, 20:03:43

Stanford study solves mystery of ancient mass extinction

Alhamisi, 25. Mwezi wa sita 2026, 21:38:34

Fossil fruits show flowering plants thrived with dinosaurs

Jumanne, 23. Mwezi wa sita 2026, 21:23:12

Meteorite points to lost moon-sized protoplanet in early Solar System

Jumanne, 26. Mwezi wa tano 2026, 08:06:18

Scientists identify ancient planet factory beyond Jupiter

Alhamisi, 14. Mwezi wa tano 2026, 21:21:55

Organic molecules detected in 66-million-year-old dinosaur bones

Alhamisi, 14. Mwezi wa tano 2026, 14:22:44

Antarctic ice reveals earth passing through supernova debris

Alhamisi, 14. Mwezi wa tano 2026, 06:50:20

Ancient trees reveal medieval solar storm from 1200 ce

Jumatatu, 11. Mwezi wa tano 2026, 15:28:03

Dante's inferno may describe ancient asteroid impact, study suggests

Tovuti hii inatumia vidakuzi

Tunatumia vidakuzi kwa uchambuzi ili kuboresha tovuti yetu. Soma sera ya faragha yetu kwa maelezo zaidi.
Kataa