Back to the full story4 sources · The Galaxy’s Fastest Star Could Reveal the Secrets of a Supermassive Black Hole◆ Analytics
The Galaxy’s Fastest Star Could Reveal the Secrets of a Supermassive Black Hole
Deterministic text analytics computed across all 4 sources. Frequency, entity overlap, and claim overlap — computed counts only. Nothing is rated true or false.
01
Frequency Analytics
The most common words and exact phrases across every report in this cluster. Computed counts only.
Top words
blackholestarfastestaroundmilkysupermassivegalaxyrevealclose
Top phrases
black holemilky wayfound the fastest known starsupermassive black holefound the fastest knownknown star in the milkystar in the milky waysupermassive blackfastest known starfound the fastest
02
Entity Overlap
Names detected in the report text: which appear across multiple sources, and which only one source mentions.
Across multiple sources
- Milky Way · 2 sources
- Sagittarius A · 2 sources
- Scientists · 2 sources
Unique to one source
- Astronomers · Space.com
- Dubbed · Space.com
- Earth · Space.com
- The Milky Way’s · Scientific American
03
Claim Overlap
Near-identical sentences found in two or more reports, versus sentences that appear in only one. Text match only — nothing is rated true or false.
Repeated across sources
No sentence appeared in more than one source.
Appears once
- "S301 passes close to Sagittarius A*—so close that its orbit could reveal how the black hole’s rotation warps the spacetime around it." · Wired
- "Astronomers have found the fastest known star in the Milky Way, a faint object racing around Sagittarius A*, the supermassive black hole at the heart of our galaxy." · Space.com
- "Dubbed S301, the star reaches about 15,500 miles (25,000 kilometers) per second at its fastest — more than 8% the speed of light." · Space.com
- "The star S301 swoops so close to our galaxy’s supermassive black hole that it could, for the first time ever, reveal that dark behemoth’s rotation The star S301 swoops so close to our galaxy’s supermassive black hole that it could, for the first time ever, reveal that dark behemoth’s rotation" · Scientific American
