Solar Eclipse Of July 16, 2186

A total solar eclipse will occur on July 16, 2186.

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.

Solar eclipse of July 16, 2186
Solar Eclipse Of July 16, 2186
Map
Type of eclipse
NatureTotal
Gamma−0.2396
Magnitude1.0805
Maximum eclipse
Duration449 s (7 min 29 s)
Coordinates7°24′N 46°30′W / 7.4°N 46.5°W / 7.4; -46.5
Max. width of band267 km (166 mi)
Times (UTC)
Greatest eclipse15:14:54
References
Saros139 (39 of 71)
Catalog # (SE5000)9933

This eclipse will be the longest total eclipse for several thousand years before and after it occurs. The eclipse will pass over the southern Galápagos Islands (with a total eclipse of 4 minutes occurring over the southern tip of Española Island), the northern tip of Ecuador (with a total eclipse of 3 minutes and 26 seconds on Isla Santa Rosa), central Colombia (4 minutes and 50 seconds over Bogota), central Venezuela, and northern Guyana (7 minutes and 4 seconds just north of Anna Regina).

Extreme duration

Solar Eclipse Of July 16, 2186 
267 km diameter shadow at greatest eclipse
Solar Eclipse Of July 16, 2186 
Saros 139 member durations

This will be the longest total solar eclipse between 4000 BC and at least AD 6000 (10,000 years), lasting a maximum of 7 minutes, 29.22 seconds. The factors that will make this such a long eclipse are:

  • The Earth being very near aphelion (furthest away from the Sun in its elliptical orbit, making its angular diameter nearly as small as possible). This occurs around July 6th.
  • The Moon being almost exactly at perigee (making its angular diameter as large as possible). The moment of greatest eclipse will be just 50 minutes after perigee.
  • The midpoint of the eclipse being very close to the Earth's equator, where the Earth's rotational velocity is greatest.
  • The midpoint of the eclipse being near the subsolar point (the part of the Earth closest to the Sun, and therefore also closest to the Moon during an eclipse).
  • The vector of the eclipse path at the midpoint of the eclipse aligning with the vector of the Earth's rotation (i.e. not diagonal but due east). For solar eclipses at the ascending node (odd numbered saros) this occurs approximately 12 days after the summer solstice.

The longest historical total eclipse lasted 7 minutes 27.54 seconds on June 15, 743 BC. The longest eclipse theoretically possible is 7 minutes and 32 seconds.

Responses

Michael Zeiler, an eclipse cartographer, told Live Science the 2186 eclipse "will last up to an astonishing 7 minutes and 29 seconds, very close to the theoretical limit of 7 and a half minutes."

Vice magazine, musing what the "wolves feasting on the bones" of a possibly then-extinct human civilization would think, suggested the longest solar eclipse in 12,000 years would be "worth a howl".

IFL Science noted that the 22nd century will be a "golden era for eclipse chasers", with the 2186 eclipse overshadowing two other 7+ minute events in 2150 and 2168. No total solar eclipse of the 21st century will exceed 7 minutes.

In March 2023, the art and design magazine IGNANT interviewed the Berlin-based photographer Matthias Ledinger about his project AD2186. Using primarily black and white media, Ledinger "depicts the complex awe-sensations and emotions generated by the solar eclipse" similar to that of the Overview effect.

Saros 139

This eclipse is a member 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 to December 9, 1825; and total eclipses from December 21, 1843, through to March 26, 2601. The series ends at member 71 as a partial eclipse on July 3, 2763. Its eclipses are tabulated in three columns; every third eclipse in the same column is one exeligmos apart, so they all cast shadows over approximately the same parts of the Earth.

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. After that date, the durations of totality will decrease until the series ends. This date is the longest solar eclipse computed between 4000 BC and AD 6000. Saros series eclipses occur during the Moon's ascending node (a term related to our equator and polar-naming conventions).

Series members 24–45 occur between 1901 and 2300
24 25 26
Solar Eclipse Of July 16, 2186 
February 3, 1916
Solar Eclipse Of July 16, 2186 
February 14, 1934
Solar Eclipse Of July 16, 2186 
February 25, 1952
27 28 29
Solar Eclipse Of July 16, 2186 
March 7, 1970
Solar Eclipse Of July 16, 2186 
March 18, 1988
Solar Eclipse Of July 16, 2186 
March 29, 2006
30 31 32
Solar Eclipse Of July 16, 2186 
April 8, 2024
Solar Eclipse Of July 16, 2186 
April 20, 2042
Solar Eclipse Of July 16, 2186 
April 30, 2060
33 34 35
Solar Eclipse Of July 16, 2186 
May 11, 2078
Solar Eclipse Of July 16, 2186 
May 22, 2096
Solar Eclipse Of July 16, 2186 
June 3, 2114
36 37 38
Solar Eclipse Of July 16, 2186 
June 13, 2132
Solar Eclipse Of July 16, 2186 
June 25, 2150
Solar Eclipse Of July 16, 2186 
July 5, 2168
39 40 41
Solar Eclipse Of July 16, 2186 
July 16, 2186
Solar Eclipse Of July 16, 2186 
July 27, 2204
Solar Eclipse Of July 16, 2186 
August 8, 2222
42 43 44
Solar Eclipse Of July 16, 2186 
August 18, 2240
Solar Eclipse Of July 16, 2186 
August 29, 2258
Solar Eclipse Of July 16, 2186 
September 9, 2276
45
Solar Eclipse Of July 16, 2186 
September 20, 2294

References

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