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M1

Micro

Magnitude 1+

Energy (TNT)
0.0 tons of TNT
Annual Frequency
1,300,000/yr
Typical Damage
None

Description

Micro earthquakes, not felt by humans.

Not felt. Detected only by seismographs.

Recent Earthquakes at This Level

Mag Location Time
1.27080097382137 10 km SSE of Anza, CA 1 hour ago
1.3 58 km WNW of Skwentna, Alaska 1 hour, 1 minute ago
1.6 25 km ESE of Chase, Alaska 1 hour, 6 minutes ago
1.11 7 km SE of Cloverdale, CA 1 hour, 19 minutes ago
1.87 11 km NE of Pāhala, Hawaii 1 hour, 40 minutes ago
1.1 26 km SE of Chickaloon, Alaska 2 hours, 27 minutes ago
1.47 9 km WNW of Cobb, CA 2 hours, 28 minutes ago
1.9 10 km E of Chicken, Alaska 2 hours, 34 minutes ago
1.3 8 km WNW of Eagle River, Alaska 3 hours, 10 minutes ago
1.19 12 km NNE of Angwin, CA 3 hours, 29 minutes ago
1.52 32 km SE of Mina, Nevada 3 hours, 44 minutes ago
1.9 60 km NW of Elfin Cove, Alaska 3 hours, 47 minutes ago
1.1 19 km ENE of Four Mile Road, Alaska 4 hours, 45 minutes ago
1.61 19 km ENE of Coachella, CA 5 hours, 15 minutes ago
1.1 82 km NNW of Karluk, Alaska 5 hours, 25 minutes ago
1.9 54 km E of Denali National Park, Alaska 6 hours, 2 minutes ago
1.5 42 km S of Nelchina, Alaska 6 hours, 11 minutes ago
1.7 59 km S of Whites City, New Mexico 6 hours, 13 minutes ago
1.19 9 km NNE of San Dimas, CA 6 hours, 31 minutes ago
1.7 8 km ESE of Pearsall, Texas 6 hours, 41 minutes ago

Frequently Asked Questions

The magnitude scale is logarithmic because earthquake energy varies over an enormous range. Each whole-number increase represents about 31.6 times more energy released. A linear scale would be impractical because a M9.0 earthquake releases roughly 1 billion times more energy than a M3.0 earthquake.

Magnitude measures the total energy released at an earthquake's source — each earthquake has one magnitude. Intensity (Modified Mercalli scale) measures the effects at a specific location — the same earthquake can have different intensities at different distances. A M7.0 earthquake might be MMI IX near the epicenter but only MMI III 200 km away.

Theoretically, maximum magnitude is limited by the length of faults that can rupture simultaneously. The longest subduction zones could produce earthquakes up to about M10, but no fault system on Earth is long enough to exceed this. The largest recorded earthquake was M9.5 (Chile, 1960).

A magnitude 7.0 earthquake releases approximately 1,000 times more energy than a magnitude 5.0 earthquake. Each whole-number step represents 31.6 times more energy, so two steps (5 to 7) is 31.6 x 31.6 = approximately 1,000 times. In terms of amplitude, each step is 10 times larger.

A foreshock is a smaller earthquake that precedes a larger mainshock in the same area — though it can only be identified as such after the mainshock occurs. An aftershock follows the mainshock and is caused by stress adjustments along and near the ruptured fault. Aftershock sequences can last days to years depending on mainshock magnitude.