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Showing posts with label Saros 114 penumbral lunar eclipse. Show all posts
Showing posts with label Saros 114 penumbral lunar eclipse. Show all posts

Wednesday, February 8, 2017

February Full Moon Enters Earthly Penumbra for 2017’s First Lunar Eclipse


Summary: The February full moon passes through the Earthly penumbra at 22:34 Coordinated Universal Time, Feb. 10, for 2017’s first lunar eclipse.


“Geometry of a Lunar Eclipse”: Sagredo, Public Domain, via Wikimedia Commons

The February full moon passes through the Earthly penumbra, beginning Friday, Feb. 10, at 22:34 Coordinated Universal Time (5:34 p.m. Eastern Standard Time), for 2017’s first lunar eclipse.
The February 2017 full moon’s passage through Earth’s faint, outer shadow, known as penumbra, occasions a penumbral lunar eclipse. The penumbra, which only blocks a portion of sunlight, subtly darkens the lunar surface.
A lunar eclipse only occurs during the moon’s full phase. The alignment of sun, Earth and moon, with Earth in the middle, that characterizes the full moon phase is responsible for the shadow cast upon the lunar surface by Earth’s partial or total blockage of sunlight.
The full phase does not trigger monthly lunar eclipses because of the tipped lunar orbit. The moon’s orbit is tipped about 5 degrees above or below the plane of Earth’s orbit around the sun. The orbital tip accounts for mostly misses of Earth’s shadows by the moon.
Also, for an eclipse to occur, the full moon needs to be near one of the two nodes, or points, where the lunar orbit intersects the plane of Earth's orbit around the sun. Two to four times each year, the full moon's nearness to a node catches the dark inner umbral shadow or subtle outer penumbral shadow cast by Earth during syzygy, an alignment of the three celestial bodies (sun, Earth, moon).
Penumbral lunar eclipses are rarely total. In a total penumbral lunar eclipse, the entire moon enters the penumbra without touching the umbral shadow. In 2017, the February full moon does not experience a total penumbral eclipse.
The 21st century, which spans Jan. 1, 2001, to Dec. 31, 2100, claims 86 penumbral eclipses. According to retired NASA astrophysicist Fred Espenak, known popularly as Mr. Eclipse, total penumbral eclipses, numbering just five, only account for 5.8 percent of the century’s penumbral eclipses. The first of the 21st century’s five total penumbral eclipses took place Tuesday, March 14, 2006. The remaining four occur in the last half of the century: Friday, Aug. 29, 2053; Friday, April 25, 2070; Saturday, Aug. 8, 2082; Tuesday, Sep. 29, 2099.
The penumbral eclipse magnitude expresses the fractional coverage of the lunar diameter by the Earthly penumbra. A penumbral magnitude of less than 1 indicates coverage of a small portion of the lunar diameter by the Earthly penumbra.
The penumbral magnitude for the February 2017 full moon during the penumbral lunar eclipse is 0.9884. The penumbral magnitude for the preceding penumbral lunar eclipse, which took place Friday, Sept. 16, 2016, was 0.9080.
Almost three years pass before the occurrence of the next penumbral lunar eclipse after February 2017’s event. On Friday, Jan. 10, 2020, the penumbral lunar eclipse has a penumbral magnitude of 0.8956.
Mr. Espenak’s identifies the total penumbral eclipse that occurs Friday, April 25, 2070, as the 21st century’s largest penumbral lunar eclipse. It has a penumbral magnitude of 1.0515.
The 21st century’s smallest penumbral lunar eclipse, which is not total, takes place Sunday, July 18, 2027. Its penumbral magnitude is 0.0014.
The February 2017 penumbral lunar eclipse happens four days after the month’s perigee, or closest center-to-center distance between Earth and moon. On Monday, Feb. 6, the waxing gibbous moon marked a perigee of 368,816 kilometers (229,171.638 miles).
Four eclipses, comprising two lunar and two solar, take place in 2017. The Feb. 10 penumbral lunar eclipse is succeeded a little over two weeks later, on Sunday, Feb. 26, by an annular solar eclipse.
In August, the year’s second set of lunar and solar eclipses happens. On Monday, Aug. 7, a partial lunar eclipse takes place. Two weeks later, a total solar eclipse, named the Great American Eclipse, takes place Monday, Aug. 21.
The takeaway for the February full moon as opener of 2017’s eclipse lineup, via its passage through the Earthly penumbra, is the penumbral lunar eclipse’s subtle visibility and its placeholder status as marking almost three years of no penumbral lunar eclipses until January 2020.

chart of the lunar path through Earth's shadow during the February 2017 penumbral lunar eclipse: Tom Ruen (SockPuppetForTomruen), Public Domain, via Wikimedia Commons

Acknowledgment
My special thanks to talented artists and photographers/concerned organizations who make their fine images available on the internet.

Image credits:
“Geometry of a Lunar Eclipse”: Sagredo, Public Domain, via Wikimedia Commons @ https://commons.wikimedia.org/wiki/File:Geometry_of_a_Lunar_Eclipse.svg
chart of the lunar path through Earth's shadow during the February 2017 penumbral lunar eclipse: Tom Ruen (SockPuppetForTomruen), Public Domain, via Wikimedia Commons @ https://commons.wikimedia.org/wiki/File:Lunar_eclipse_chart_close-2017Feb11.png

For further information:
EarthSky. “Why No Eclipse Every Full and New Moon?” EarthSky > Science Wire > Space. March 6, 2016.
Available @ http://earthsky.org/space/why-isnt-there-an-eclipse-every-full-moon
“Eclipses in Honolulu, Hawaii, USA.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/in/usa/honolulu
Espenak, Fred. “Lunar Eclipses for Beginners.” Mr. Eclipse > Lunar Eclipses. 2009.
Available @ http://www.mreclipse.com/Special/LEprimer.html
Espenak, Fred. “Penumbral Lunar Eclipse of 2017 Feb 11.” Eclipse Wise > Lunar Eclipses.
Available @ http://eclipsewise.com/lunar/LEprime/2001-2100/LE2017Feb11Nprime.html
Espenak, Fred, and Jean Meeus. “Five Millennium Catalog of Lunar Eclipses.” NASA Eclipse Web Site > Lunar Eclipses > Lunar Eclipse Publications Online.
Available @ http://eclipse.gsfc.nasa.gov/LEcat5/LE2001-2100.html
“February 10 / February 11, 2017 Penumbral Lunar Eclipse.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/lunar/2017-february-11
Marriner, Derdriu. “February 2017 Penumbral Lunar Eclipse Over Every Continent Except Australia.” Earth and Space News. Wednesday, Feb. 1, 2017.
Available @ https://earth-and-space-news.blogspot.com/2017/02/february-2017-penumbral-lunar-eclipse.html
Marriner, Derdriu. “Penumbral Lunar Eclipse Sept. 16 Is Last of Three 2016 Lunar Eclipses.” Earth and Space News. Wednesday, Sept. 14, 2016.
Available @ https://earth-and-space-news.blogspot.com/2016/09/penumbral-lunar-eclipse-sept16-is-last.html
McClure, Bruce. “Penumbral Eclipse on Night of February 10.” EarthSky > Tonight. Feb. 10, 2017.
Available @ http://earthsky.org/tonight/penumbral-eclipse-on-night-of-february-10
“Solar and Lunar Eclipses Worldwide -- Next 10 Years.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/list.html
Walker, John. “Lunar Perigee and Apogee Calculator.” Fourmilab Switzerland > Earth and Moon Viewer.
Available @ https://www.fourmilab.ch/earthview/pacalc.html
Webb, Brian. “Coordinated Universal Time (UTC).” Space Archive. March 27, 2016.
Available @ http://www.spacearchive.info/utc.htm
“What Does the Magnitude of an Eclipse Mean?” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/magnitude.html


Wednesday, February 1, 2017

February 2017 Penumbral Lunar Eclipse Over Every Continent Except Australia


Summary: The February 2017 penumbral lunar eclipse is visible over every continent except Australia.


graphics and details for penumbral lunar eclipse of Saturday, Feb. 11, 2017ls: "Permission is freely granted to reproduce this data when accompanied by an acknowledgment, Eclipse Predictions by Fred Espenak, NASA GSFC Emeritus," via NASA Eclipse Web Site

The February 2017 penumbral lunar eclipse that ushers in the year’s lineup of two lunar and two solar eclipses is visible over every continent except Australia.
Visibility of February’s penumbral lunar eclipse happens Friday, Feb. 10, in the Western Hemisphere. Eclipse visibility for most of the Eastern Hemisphere takes place Saturday morning, Feb. 11.
On the Asian mainland in the Eastern Hemisphere, visibility does not extend to Russia’s Far East, northeastern China, North Korea or South Korea. The February 2017 penumbral lunar eclipse disfavors most of the Pacific Ocean. Major Pacific islands, such as Japan, New Guinea, New Zealand, the Philippines and Taiwan, are outside of the geographic regions of eclipse visibility.
All of the Lower 48 states of the continental United States have eclipse visibility. The United States’ five Caribbean territories (disputed Bajo Nuevo Bank, disputed Navassa Island, Puerto Rico, disputed Serranilla Bank, U.S. Virgin Islands) also fall within the eclipse’s viewing regions.
Western Alaska falls outside of the visibility path. The state of Hawaii joins the United States 11 Pacific territories in exclusion for viewing the February 2017 penumbral lunar eclipse.
The February 2017 penumbral lunar eclipse begins with the instant of the moon’s first contact with Earth’s penumbra, the weak part of Earth’s shadow. The instant of first contact is identified as P1.
NASA’s eclipse expert, retired astrophysicist Fred Espenak, gives Friday, Feb. 10, at 22:34 Coordinated Universal Time as the start time for the penumbral lunar eclipse. For continental U.S. time zones, the eclipse begins Friday, Feb. 10, at 5:34 p.m. Eastern Standard Time; 4:34 p.m. Central Standard Time; 3:34 p.m. Mountain Standard Time; 2:34 p.m. Pacific Standard Time. For U.S. territories in the Caribbean Sea, the eclipse starts at 6:34 p.m. Atlantic Standard Time.
The eclipse ends with the instant of last contact with Earth’s penumbral shadow. The last contact instant is identified as P4.
Espenak, known popularly as Mr. Eclipse, gives Saturday, Feb. 11, at 02:53 UTC as the penumbral lunar eclipse’s instant of last contact. For continental U.S. time zones, P4 happens Friday, Feb. 10, at 9:53 p.m. EST; 8:53 p.m. CST; 7:53 p.m. MST; 6:53 p.m. PST. For U.S. Caribbean territories, eclipse ending time is 10:53 p.m. AST.
In between first and last contacts, the greatest eclipse is logged. The greatest eclipse marks the instant of the moon’s closest passage to the axis of Earth’s shadow. Greatest eclipse occurs Saturday, Feb. 11, at 00:43 UTC. For continental U.S. time zones, greatest eclipse happens Friday, Feb. 10, at 7:43 p.m. EST; 6:43 p.m. CST; 5:43 p.m. MST; 4:43 p.m. PST. For U.S. Caribbean territories, greatest eclipse takes place at 7:43 p.m. AST.
The eclipse’s duration is 4 hours 19 minutes. Lacking the drama of total or partial umbral lunar eclipses, penumbral lunar eclipses do not offer visibility for the event’s entire duration. A possible span of one to two hours for best visibility centers on the instant of greatest eclipse.
The February 2017 penumbral lunar eclipse is the first of the year’s two lunar eclipses. The second eclipse, which will be partial, takes place in August.
The August 2017 event is a partial lunar eclipse. Entrance by only a portion of the moon into Earth’s umbral segment occasions a partial lunar eclipse.
The takeaway for the February 2017 penumbral lunar eclipse is that its wide visibility encompasses six of Earth’s seven continents and parts or all of Earth’s five oceans.

Earth’s orientation, as viewed from the moon’s center during greatest eclipse: SockPuppetForTomruen, Public Domain, via Wikimedia Commons

Acknowledgment
My special thanks to talented artists and photographers/concerned organizations who make their fine images available on the internet.

Image credits:
graphics and details for penumbral lunar eclipse of Saturday, Feb. 11, 2017ls: "Permission is freely granted to reproduce this data when accompanied by an acknowledgment, Eclipse Predictions by Fred Espenak, NASA GSFC Emeritus," via NASA Eclipse Web Site @ https://eclipse.gsfc.nasa.gov/LEplot/LEplot2001/LE2017Feb11N.pdf
Earth’s orientation, as viewed from the moon’s center during greatest eclipse: SockPuppetForTomruen, Public Domain, via Wikimedia Commons @ https://commons.wikimedia.org/wiki/File:Lunar_eclipse_from_moon-2017Feb11.png

For further information:
“Eclipses in Honolulu, Hawaii, USA.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/in/usa/honolulu
Espenak, Fred. “Penumbral Lunar Eclipse of 2017 Feb 11.” Eclipse Wise > Lunar Eclipses.
Available @ http://eclipsewise.com/lunar/LEprime/2001-2100/LE2017Feb11Nprime.html
Espenak, Fred. Thousand Year Canon of Lunar Eclipses 1501 to 2500. Portal AZ: Astropixels Publishing, 2014.
Espenak, Fred, and Jean Meeus. “Five Millennium Catalog of Lunar Eclipses.” NASA Eclipse Web Site > Lunar Eclipses > Lunar Eclipse Publications Online.
Available @ http://eclipse.gsfc.nasa.gov/LEcat5/LE2001-2100.html
“February 10 / February 11, 2017  Penumbral Lunar Eclipse.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/lunar/2017-february-11
Marriner, Derdriu. “Penumbral Lunar Eclipse Sept. 16 Is Last of Three 2016 Lunar Eclipses.” Earth and Space News. Wednesday, Sept. 14, 2016.
Available @ https://earth-and-space-news.blogspot.com/2016/09/penumbral-lunar-eclipse-sept16-is-last.html
McClure, Bruce. “Penumbral Eclipse on Night of February 10.” EarthSky > Tonight. Feb. 10, 2017.
Available @ http://earthsky.org/tonight/penumbral-eclipse-on-night-of-february-10
“Solar and Lunar Eclipses Worldwide -- Next 10 Years.” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/list.html
Webb, Brian. “Coordinated Universal Time (UTC).” Space Archive. March 27, 2016.
Available @ http://www.spacearchive.info/utc.htm
“What Does the Magnitude of an Eclipse Mean?” Time and Date > Sun & Moon > Eclipses.
Available @ https://www.timeanddate.com/eclipse/magnitude.html