Solar Eclipse Of June 30, 1935
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A partial
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 i ...
occurred at the Moon's
descending node An orbital node is either of the two points where an orbit intersects a plane of reference to which it is inclined. A non-inclined orbit, which is contained in the reference plane, has no nodes. Planes of reference Common planes of referenc ...
of orbit on Sunday, June 30, 1935, with a
magnitude Magnitude may refer to: Mathematics *Euclidean vector, a quantity defined by both its magnitude and its direction *Magnitude (mathematics), the relative size of an object *Norm (mathematics), a term for the size or length of a vector *Order of ...
of 0.3375. A
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 i ...
occurs when the
Moon The Moon is Earth's only natural satellite. It Orbit of the Moon, orbits around Earth at Lunar distance, an average distance of (; about 30 times Earth diameter, Earth's diameter). The Moon rotation, rotates, with a rotation period (lunar ...
passes between
Earth Earth is the third planet from the Sun and the only astronomical object known to Planetary habitability, harbor life. This is enabled by Earth being an ocean world, the only one in the Solar System sustaining liquid surface water. Almost all ...
and the
Sun The Sun is the star at the centre of the Solar System. It is a massive, nearly perfect sphere of hot plasma, heated to incandescence by nuclear fusion reactions in its core, radiating the energy from its surface mainly as visible light a ...
, 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. This was the third of five solar eclipses in 1935, with the others occurring on
January 5 Events Pre-1600 * 1477 – Battle of Nancy: Charles the Bold is defeated and killed in a conflict with René II, Duke of Lorraine; Burgundy subsequently becomes part of France. 1601–1900 * 1675 – Battle of Colmar: The French ...
,
February 3 Events Pre-1600 * 1047 – Drogo of Hauteville is elected as count of the Apulian Normans during the Norman conquest of Southern Italy. * 1112 – Ramon Berenguer III, Count of Barcelona, and Douce I, Countess of Provence, marry, u ...
, July 30, and
December 25 Events Pre-1600 * 36 – Forces of Emperor Guangwu of the Eastern Han, under the command of Wu Han, conquer the separatist Chengjia empire, reuniting China. * 274 – A temple to Sol Invictus is dedicated in Rome by Emperor Aurelian. ...
. The next time this will occur is 2206. A partial eclipse was visible for parts of
Northern Europe The northern region of Europe has several definitions. A restrictive definition may describe northern Europe as being roughly north of the southern coast of the Baltic Sea, which is about 54th parallel north, 54°N, or may be based on other ge ...
, the northern
Soviet Union The Union of Soviet Socialist Republics. (USSR), commonly known as the Soviet Union, was a List of former transcontinental countries#Since 1700, transcontinental country that spanned much of Eurasia from 1922 until Dissolution of the Soviet ...
, and
Greenland Greenland is an autonomous territory in the Danish Realm, Kingdom of Denmark. It is by far the largest geographically of three constituent parts of the kingdom; the other two are metropolitan Denmark and the Faroe Islands. Citizens of Greenlan ...
.


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.


Eclipse season

This eclipse is part of an
eclipse season An eclipse season is a period, roughly every six months, when eclipses occur. Eclipse seasons are the result of the axial parallelism of the Orbit of the Moon, Moon's orbital plane (orbital inclination, tilted five degrees to the ecliptic, Earth ...
, 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 A fortnight is a unit of time equal to 14 days (two weeks). The word derives from the Old English term , meaning "" (or "fourteen days", since the Anglo-Saxons counted by nights). Astronomy and tides In astronomy, a ''lunar fortnight'' is hal ...
. The first and last eclipse in this sequence is separated by one
synodic month In lunar calendars, a lunar month is the time between two successive Syzygy (astronomy), syzygies of the same type: new moons or full moons. The precise definition varies, especially for the beginning of the month. Variations In Shona people, S ...
.


Related eclipses


Eclipses in 1935

* A partial solar eclipse on January 5. * A total lunar eclipse on January 19. * A partial solar eclipse on February 3. * A partial solar eclipse on June 30. * A total lunar eclipse on July 16. * A partial solar eclipse on July 30. * An annular solar eclipse on December 25.


Metonic

* Preceded by: Solar eclipse of September 12, 1931 * Followed by: Solar eclipse of April 19, 1939


Tzolkinex

* Preceded by: Solar eclipse of May 19, 1928 * Followed by: Solar eclipse of August 12, 1942


Half-Saros

* Preceded by: Lunar eclipse of June 25, 1926 * Followed by: Lunar eclipse of July 6, 1944


Tritos

* Preceded by: Solar eclipse of July 31, 1924 * Followed by: Solar eclipse of May 30, 1946


Solar Saros 116

* Preceded by: Solar eclipse of June 19, 1917 * Followed by: Solar eclipse of July 11, 1953


Inex

* Preceded by: Solar eclipse of July 21, 1906 * Followed by: Solar eclipse of June 10, 1964


Triad

* Preceded by: Solar eclipse of August 28, 1848 * Followed by: Solar eclipse of April 30, 2022


Solar eclipses of 1935–1938


Saros 116


Metonic series


Tritos series


Inex series


References


External links

* http://eclipse.gsfc.nasa.gov/SEplot/SEplot1901/SE1935Jun30P.GIF {{Solar eclipses 1935 06 30 1935 in science 1935 06 30 June 1935