Fault · Nevada
Monte Cristo Valley fault
In plain English
The two sides move 0.2 to 1 mm a year — 2 to 10 cm every century.
It has broken the ground surface within the last 150 years.
The largest earthquake recorded near it was M 6.8 in 1932 (The 1932 Cedar Mountain, Nevada Earthquake) — about 500,000 times the energy of an M3.0, the size people start to feel. It released about 240 kilotons of TNT.
This week vs. its last ten years
0/100
quiet
0 quakes of M1.5+ within 5 km of the trace in the last 7 days — busier than 0% of weeks since 2016. A normal week: 0–0.
Computed from the USGS catalogue · a description of the past, not a forecast · method
Every year since 2016
Earthquakes of M2.5+ with an epicentre within 10 km of the mapped trace. Near is not the same as on: some will have slipped on neighbouring faults.
The big ones recorded near it
- M 6.8 The 1932 Cedar Mountain, Nevada Earthquake
December 21, 1932 · epicentre 7 km from the trace
Before 1973 from the USGS ComCat historical catalogue (within 25 km; epicentres of old earthquakes are estimates). Since 2016, M4+ within 10 km.
Most recent near it
- M 2.9 19 km NE of Mina, Nevada
2022-12-25 · 3 km from the trace - M 3.0 18 km NE of Mina, Nevada
2022-06-09 · 3 km from the trace - M 3.2 25 km ENE of Mina, Nevada
2021-11-22 · 4 km from the trace - M 3.1 19 km E of Mina, Nevada
2020-05-23 · 4 km from the trace
Neighbouring faults
- Benton Spring fault 19 km away
- Gabbs Valley fault 30 km away
- Indian Head fault 35 km away
Fault trace, slip rate and age: USGS Quaternary Fault and Fold Database (public domain), simplified for the web. Earthquakes: USGS ComCat. QuakeIndex does not forecast earthquakes; a fault's history describes the past. For early warning use ShakeAlert.