Solar eclipse of November 14, 2050

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Solar eclipse of November 14, 2050
SE2050Nov14P.png
Map
Type of eclipse
NaturePartial
Gamma1.0447
Magnitude0.8874
Maximum eclipse
Coordinates69°30′N 1°00′E / 69.5°N 1°E / 69.5; 1
Times (UTC)
Greatest eclipse13:30:53
References
Saros153 (11 of 70)
Catalog # (SE5000)9620

A partial solar eclipse will occur on Monday, November 14, 2050. 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.

Related eclipses[]

Solar eclipses 2047–2050[]

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.[1]

Note: Partial lunar eclipses on January 26, 2047 and July 22, 2047 occur on the previous lunar year eclipse set.

Solar eclipse sets from 2047–2050
Descending node   Ascending node
118 June 23, 2047
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Partial
123 December 16, 2047
SE2047Dec16P.png
Partial
128 June 11, 2048
SE2048Jun11A.png
Annular
133 December 5, 2048
SE2048Dec05T.png
Total
138 May 31, 2049
SE2049May31A.png
Annular
143 November 25, 2049
SE2049Nov25H.png
Hybrid
148 May 20, 2050
SE2050May20H.png
Hybrid
153 November 14, 2050
SE2050Nov14P.png
Partial

Metonic series[]

The metonic series repeats eclipses every 19 years (6939.69 days), lasting about 5 cycles. Eclipses occur in nearly the same calendar date. In addition, the octon subseries repeats 1/5 of that or every 3.8 years (1387.94 days). All eclipses in this table occur at the Moon's ascending node.

21 eclipse events between June 21, 1982, and June 21, 2058
June 21 April 8–9 January 26 November 13–14 September 1–2
107 109 111 113 115
June 21, 1963 April 9, 1967 January 26, 1971 November 14, 1974 September 2, 1978
117 119 121 123 125
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June 21, 1982
SE1986Apr09P.png
April 9, 1986
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January 26, 1990
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November 13, 1993
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September 2, 1997
127 129 131 133 135
SE2001Jun21T.png
June 21, 2001
SE2005Apr08H.png
April 8, 2005
SE2009Jan26A.png
January 26, 2009
SE2012Nov13T.png
November 13, 2012
SE2016Sep01A.png
September 1, 2016
137 139 141 143 145
SE2020Jun21A.png
June 21, 2020
SE2024Apr08T.png
April 8, 2024
SE2028Jan26A.png
January 26, 2028
SE2031Nov14H.png
November 14, 2031
SE2035Sep02T.png
September 2, 2035
147 149 151 153 155
SE2039Jun21A.png
June 21, 2039
SE2043Apr09T.png
April 9, 2043
SE2047Jan26P.png
January 26, 2047
SE2050Nov14P.png
November 14, 2050
SE2054Sep02P.png
September 2, 2054
157
SE2058Jun21P.png
June 21, 2058

References[]

  1. ^ van Gent, R.H. "Solar- and Lunar-Eclipse Predictions from Antiquity to the Present". A Catalogue of Eclipse Cycles. Utrecht University. Retrieved 6 October 2018.

External links[]

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