Solar eclipse of June 13, 2132

A total solar eclipse will occur at the Moon’s ascending node of the orbit on June 13, 2132. A solar eclipse occurs when the Moon passes between Earth and the Sun, thereby totally or partly obscuring the image of the Sun for a viewer on Earth. A total solar eclipse occurs when the Moon's apparent diameter is larger than the Sun's, blocking all direct sunlight, turning day into darkness. Totality occurs in a narrow path across Earth's surface, with the partial solar eclipse visible over a surrounding region thousands of kilometres wide. This is one of the solar eclipses occurring on Friday the 13th.

Solar eclipse of June 13, 2132
Map
Type of eclipse
NatureTotal
Gamma-0.06
Magnitude1.0788
Maximum eclipse
Duration415 sec (6 m 55 s)
Coordinates22.3°N 70.1°W / 22.3; -70.1
Max. width of band255 km (158 mi)
Times (UTC)
Greatest eclipse16:46:24
References
Saros139 (36 of 71)
Catalog # (SE5000)9805

Duration

Lasting a maximum of 6 minutes, 55.02 seconds, it will be the longest solar eclipse since the solar eclipse of July 11, 1991, which lasted for 6 minutes 53.08 seconds.

Saros 139

It is a part of saros series 139, repeating every 18 years, 11 days, 8 hours, containing 71 events. The series started with partial solar eclipse on May 17, 1501. It contains hybrid eclipses on August 11, 1627 through December 9, 1825 and total eclipses from December 21, 1843 through March 26, 2601. The series ends at member 71 as a partial eclipse on July 3, 2763. Members in the same column are one exeligmos apart and thus occur in the same geographic area.

The solar eclipse of June 13, 2132 will be the longest total solar eclipse since July 11, 1991 at 6 minutes, 55.02 seconds.

The longest duration of totality will be produced by member 39 at 7 minutes, 29.22 seconds on July 16, 2186.[1] This is the longest solar eclipse computed between 4000BC and 6000AD.[2]

After 16 July 2186, totality duration will decrease. All eclipses in this series occurs at the Moon’s ascending node.

References


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