Phase one of our updated website is now live. Explore GeoNet beta and let us know what you think. Read this news article to find out what's happening.
| PublicID | 2019p589276 |
| UTC Time | 2019-08-07T00:43:01Z |
| Latitude | -32.12 (± 5.6 km) |
| Longitude | 178.69 (± 10.4 km) |
| Depth | 12 km (± 0 km) |
| Depth Type | operator assigned |
| Earth Model | iasp91 |
| Used Phase Count | 44 |
| Used Station Count | 30 |
| Standard Error | 3.11 (s) |
| Azimuthal Gap | 200.77 (degrees) |
| Minimum Distance | 4.08 (degrees) |
| Type | Magnitude | Station Count |
| Preferred (mB) | 4.8 (± 0.1) | |
| MLv | 4.7 (± 0.1) | 7 |
| ML | 5.0 (± 0.2) | 9 |
| mB | 4.8 (± 0.1) | 6 |
| Mw(mB) | 4.0 (± 0.4) | 6 |
| M | 4.4 | 7 |
GeoNet combines magnitudes into a summary magnitude, M, which consists of a weighted average of the individual magnitudes and attempts to be a best possible compromise between all magnitudes for a range of earthquake sizes.
Summary magnitude for GeoNet is then defined as:
M = (2 * MLv + (0.4 * number_of stations(Mw(mB)) - 1) * Mw(mB)) / (2 + (0.4 * number_of_stations(Mw(mB)) - 1))
Where MLv is local magnitude calculated on the vertical component and Mw(mB) is a Mw estimation based of mB by Bormann and Saul (2008).
Map showing stations with picks used to locate the earthquake. Stations with picks that have a zero weight in the solution are shown as small grey circles. Those with a higher weight are shown as larger circles. The quake is shown by the largest circle.