Solar eclipse of February 14, 1915

Solar eclipse of February 14, 1915
Map
Type of eclipse
Nature Annular
Gamma -0.2024
Magnitude 0.9789
Maximum eclipse
Duration 124 sec (2 m 4 s)
Coordinates 24°00′S 120°42′E / 24°S 120.7°E / -24; 120.7
Max. width of band 77 km (48 mi)
Times (UTC)
Greatest eclipse 4:33:20
References
Saros 129 (46 of 80)
Catalog # (SE5000) 9315

An annular solar eclipse occurred on February 14, 1915. 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. An annular solar eclipse occurs when the Moon's apparent diameter is smaller than the Sun's, blocking most of the Sun's light and causing the Sun to look like an annulus (ring). An annular eclipse appears as a partial eclipse over a region of the Earth thousands of kilometres wide.

Solar eclipses of 1913-1917

Each member 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.

Solar eclipse series sets from 1913-1917
Descending node   Ascending node
114August 31, 1913

Partial
119February 25, 1914

Annular
124August 21, 1914

Total
129February 14, 1915

Annular
134August 10, 1915

Annular
139February 3, 1916

Total
144July 30, 1916

Annular
149January 23, 1917

Partial
154July 19, 1917

Partial

Saros 129

It is a part of Saros cycle 129, repeating every 18 years, 11 days, containing 80 events. The series started with partial solar eclipse on October 3, 1103. It contains annular eclipses on May 6, 1464 through March 18, 1969, hybrid eclipses on April 8, 2005 and April 20, 2023 and total eclipses from April 30, 2041 through July 26, 2185. The series ends at member 80 as a partial eclipse on February 21, 2528. The longest duration of totality was 3 minutes, 43 seconds on June 25, 2131 .[1]

Tritos series

This eclipse is a part of a tritos cycle, repeating at alternating nodes every 135 synodic months (≈ 3986.63 days, or 11 years minus 1 month). Their appearance and longitude are irregular due to a lack of synchronization with the anomalistic month (period of perigee), but groupings of 3 tritos cycles (≈ 33 years minus 3 months) come close (≈ 434.044 anomalistic months), so eclipses are similar in these groupings.

Notes

References

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