Solar eclipse of September 13, 2080

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Template:Short description Script error: No such module "Solar eclipse". A partial solar eclipse will occur at the Moon's descending node of orbit on Friday, September 13, 2080,[1] with a magnitude of 0.8743. 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 partial solar eclipse occurs in the polar regions of the Earth when the center of the Moon's shadow misses the Earth.

The partial solar eclipse will be visible for parts of northern North America, Europe, West Africa, and North Africa.

Eclipse details

Shown below are two tables displaying details about this particular solar eclipse. The first table outlines times at which the moon's penumbra or umbra attains the specific parameter, and the second table describes various other parameters pertaining to this eclipse.[2]

September 13, 2080 Solar Eclipse Times
Event Time (UTC)
First Penumbral External Contact 2080 September 13 at 14:42:59.9 UTC
Equatorial Conjunction 2080 September 13 at 15:36:33.0 UTC
Ecliptic Conjunction 2080 September 13 at 16:27:19.9 UTC
Greatest Eclipse 2080 September 13 at 16:38:09.2 UTC
Last Penumbral External Contact 2080 September 13 at 18:33:46.9 UTC
September 13, 2080 Solar Eclipse Parameters
Parameter Value
Eclipse Magnitude 0.87434
Eclipse Obscuration 0.84863
Gamma 1.07235
Sun Right Ascension 11h29m55.2s
Sun Declination +03°14'46.9"
Sun Semi-Diameter 15'53.7"
Sun Equatorial Horizontal Parallax 08.7"
Moon Right Ascension 11h31m59.3s
Moon Declination +04°11'17.0"
Moon Semi-Diameter 16'24.7"
Moon Equatorial Horizontal Parallax 1°00'13.7"
ΔT 106.0 s

Eclipse season

Script error: No such module "Labelled list hatnote". This eclipse is part of an eclipse season, a period, roughly every six months, when eclipses occur. Only two (or occasionally three) eclipse seasons occur each year, and each season lasts about 35 days and repeats just short of six months (173 days) later; thus two full eclipse seasons always occur each year. Either two or three eclipses happen each eclipse season. In the sequence below, each eclipse is separated by a fortnight.

Eclipse season of September 2080
September 13
Descending node (new moon)
September 29
Ascending node (full moon)
File:SE2080Sep13P.png
Partial solar eclipse
Solar Saros 126
Total lunar eclipse
Lunar Saros 138

Related eclipses

Eclipses in 2080

Metonic

Tzolkinex

Half-Saros

Tritos

Solar Saros 126

Inex

Triad

Solar eclipses of 2080–2083

This eclipse is a member of a semester series. An eclipse in a semester series of solar eclipses repeats approximately every 177 days and 4 hours (a semester) at alternating nodes of the Moon's orbit.[3]

The partial solar eclipse on July 15, 2083 occurs in the next lunar year eclipse set.

Solar eclipse series sets from 2080 to 2083
Ascending node   Descending node
Saros Map Gamma Saros Map Gamma
121 March 21, 2080
File:SE2080Mar21P.png
Partial
−1.0578 126 September 13, 2080
File:SE2080Sep13P.png
Partial
1.0723
131 March 10, 2081
File:SE2081Mar10A.png
Annular
−0.3653 136 September 3, 2081
File:SE2081Sep03T.png
Total
0.3378
141 February 27, 2082
File:SE2082Feb27A.png
Annular
0.3361 146 August 24, 2082
File:SE2082Aug24T.png
Total
−0.4004
151 February 16, 2083
File:SE2083Feb16P.png
Partial
1.017 156 August 13, 2083
File:SE2083Aug13P.png
Partial
−1.2064

Saros 126

This eclipse is a part of Saros series 126, repeating every 18 years, 11 days, and containing 72 events. The series started with a partial solar eclipse on March 10, 1179. It contains annular eclipses from June 4, 1323 through April 4, 1810; hybrid eclipses from April 14, 1828 through May 6, 1864; and total eclipses from May 17, 1882 through August 23, 2044. The series ends at member 72 as a partial eclipse on May 3, 2459. 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 longest duration of annularity was produced by member 11 at 6 minutes, 30 seconds on June 26, 1359, and the longest duration of totality was produced by member 45 at 2 minutes, 36 seconds on July 10, 1972. All eclipses in this series occur at the Moon’s descending node of orbit.[4]

Series members 36–57 occur between 1801 and 2200:
36 37 38
File:SE1810Apr04A.gif
April 4, 1810
File:Saros126 37van72 SE1828Apr14H.jpg
April 14, 1828
File:SE1846Apr25H.gif
April 25, 1846
39 40 41
File:SE1864May06H.gif
May 6, 1864
File:SE1882May17T.png
May 17, 1882
File:SE1900May28T.png
May 28, 1900
42 43 44
File:SE1918Jun08T.png
June 8, 1918
File:SE1936Jun19T.png
June 19, 1936
File:SE1954Jun30T.png
June 30, 1954
45 46 47
File:SE1972Jul10T.png
July 10, 1972
File:SE1990Jul22T.png
July 22, 1990
File:SE2008Aug01T.png
August 1, 2008
48 49 50
File:SE2026Aug12T.png
August 12, 2026
File:SE2044Aug23T.png
August 23, 2044
File:SE2062Sep03P.png
September 3, 2062
51 52 53
File:SE2080Sep13P.png
September 13, 2080
File:SE2098Sep25P.png
September 25, 2098
File:Saros126 53van72 SE2116Oct06P.jpg
October 6, 2116
54 55 56
File:Saros126 54van72 SE2134Oct17P.jpg
October 17, 2134
File:Saros126 55van72 SE2152Oct28P.jpg
October 28, 2152
File:Saros126 56van72 SE2170Nov08P.jpg
November 8, 2170
57
File:Saros126 57van72 SE2188Nov18P.jpg
November 18, 2188

Metonic series

Template:Solar Metonic series 2065–2152

Tritos series

Template:Solar Tritos series 2004 April 19

Inex series

Template:Solar Inex series 2022 October 25

References

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External links


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