Solar Eclipse Of November 30, 1853
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Solar Eclipse Of November 30, 1853
A total solar eclipse occurred at the Moon's Lunar node, descending node of orbit on Wednesday, November 30, 1853, with a Magnitude of eclipse, magnitude of 1.0485. 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. Occurring about 8.5 hours before Apsis, perigee (on December 1, 1853, at 3:45 UTC), the Moon's apparent diameter was larger. The path of totality was visible from parts of modern-day Peru, Bolivia, and Brazil. A partial solar eclipse was also visible for parts of northern Oceania, Hawaii, southern North America, Central America, the Caribbean, and South America. Observations ...
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Solar Eclipse
A solar eclipse occurs when the Moon passes between Earth and the Sun, thereby obscuring the view of the Sun from a small part of Earth, totally or partially. Such an alignment occurs approximately every six months, during the eclipse season in its new moon phase, when the Moon's orbital plane is closest to Ecliptic, the plane of Earth's orbit. In a total eclipse, the disk of the Sun is fully obscured by the Moon. In #Types, partial and annular eclipses, only part of the Sun is obscured. Unlike a lunar eclipse, which may be viewed from anywhere on the night side of Earth, a solar eclipse can only be viewed from a relatively small area of the world. As such, although total solar eclipses occur somewhere on Earth every 18 months on average, they recur at any given place only once every 360 to 410 years. If the Moon were in a perfectly circular orbit and in the same orbital plane as Earth, there would be total solar eclipses once a month, at every new moon. Instead, because the Mo ...
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