NASA | Sarychev Volcano Eruption from the International Space Station
NASA | Sarychev Volcano Eruption from the International Space Station
On June 12, 2009, a fortuitous orbit of the International Space Station (ISS) made it possible for an astronaut on board to capture Sarychev Volcano in the early stages of eruption. The volcano is located on the northwestern end of Matua Island, which is part of the Kuril Islands, a chain of 56 islands northeast of Japan. The eruption sent a plume of brown-colored ash and white steam rising into the atmosphere. The plume was so immense that it cast a large shadow on the island. Sarychev is one of the most active volcanoes in the Kuril Island chain. Prior to June 12, the last explosive eruption occurred in 1989, with eruptions in 1986, 1976, 1954, and 1946 also producing lava flows. Watch the video to see how the eruption looked from space. A fortuitous orbit of the International Space Station allowed the astronauts this striking view of Sarychev Volcano (Kuril Islands, northeast of Japan) in an early stage of eruption on June 12, 2009. Sarychev Peak is one of the most active volcanoes in the Kuril Island chain, and it is located on the northwestern end of Matua Island. For more info: http://earthobservatory.nasa.gov/IOTD/view.php?id=38985 http://eol.jsc.nasa.gov/ http://earthobservatory.nasa.gov/ This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/11446. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/11446. For more information on NASA’s media guidelines, visit https://nasa.gov/multimedia/guidelines. If you liked this video, subscribe to the NASA Goddard YouTube channel: https://www.youtube.com/NASAGoddard Follow NASA’s Goddard Space Flight Center · Instagram http://www.instagram.com/nasagoddard · Twitter http://twitter.com/NASAGoddard · Twitter http://twitter.com/NASAGoddardPix · Facebook: http://www.facebook.com/NASAGoddard · Flickr http://www.flickr.com/photos/gsfc
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Perseverance Rover’s Descent and Touchdown on Mars (Official NASA Video)
Perseverance Rover’s Descent and Touchdown on Mars (Official NASA Video)
NASA's Mars 2020 Perseverance mission captured thrilling footage of its rover landing in Mars' Jezero Crater on Feb. 18, 2021. The real footage in this video was captured by several cameras that are part of the rover's entry, descent, and landing suite. The views include a camera looking down from the spacecraft's descent stage (a kind of rocket-powered jet pack that helps fly the rover to its landing site), a camera on the rover looking up at the descent stage, a camera on the top of the aeroshell (a capsule protecting the rover) looking up at that parachute, and a camera on the bottom of the rover looking down at the Martian surface.
The audio embedded in the video comes from the mission control call-outs during entry, descent, and landing.
For more information about Perseverance, visit https://mars.nasa.gov/perseverance
Credit: NASA/JPL-Caltech
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Artemis I Launching to the Moon: Official NASA Launch Trailer
Artemis I Launching to the Moon: Official NASA Launch Trailer
NASA’s Artemis I mission is targeted to launch no earlier than Aug. 29, 2022.
Artemis I will be the first integrated test of NASA’s deep space exploration systems: the Orion spacecraft, Space Launch System (SLS) rocket and the ground systems at Kennedy Space Center in Cape Canaveral, Florida. The first in a series of increasingly complex missions, Artemis I will be an uncrewed flight test that will provide a foundation for human deep space exploration, and demonstrate our commitment and capability to extend human existence to the Moon and beyond.
During this flight, the spacecraft will launch on the most powerful rocket in the world and fly farther than any spacecraft built for humans has ever flown. It will travel 280,000 miles from Earth, thousands of miles beyond the Moon over the course of about a four to six-week mission. Orion will stay in space longer than any ship for astronauts has done without docking to a space station and return home faster and hotter than ever before.
Learn more here: https://www.nasa.gov/artemis-1
Video Producer: Sonnet Apple
Music: Universal Production Music
Credit: NASA
Antares Rocket Raised on Launch Pad
Antares Rocket Raised on Launch Pad
The Orbital Sciences Corporation Antares rocket, with the Cygnus spacecraft onboard, is seen in this time-lapse movie as it is raised at launch Pad-0A, Thursday, July 10, 2014, at NASA's Wallops Flight Facility in Virginia. The Antares will launch with the Cygnus spacecraft filled with over 3,000 pounds of supplies for the International Space Station, including science experiments, experiment hardware, spare parts, and crew provisions. The Orbital-2 mission is Orbital Sciences' second contracted cargo delivery flight to the space station for NASA. Photo Credit: (NASA/Bill Ingalls)
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Antares Rocket Raised on Launch Pad
Antares Rocket Raised on Launch Pad
The Orbital Sciences Corporation Antares rocket, with the Cygnus spacecraft onboard, is seen in this time-lapse movie as it is raised at launch Pad-0A, Thursday, July 10, 2014, at NASA's Wallops Flight Facility in Virginia. The Antares will launch with the Cygnus spacecraft filled with over 3,000 pounds of supplies for the International Space Station, including science experiments, experiment hardware, spare parts, and crew provisions. The Orbital-2 mission is Orbital Sciences' second contracted cargo delivery flight to the space station for NASA. Photo Credit: (NASA/Bill Ingalls)
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Satellite Sees Global View of Sandy's Life to Landfall
Satellite Sees Global View of Sandy's Life to Landfall
An animation of satellite observations from Oct. 21-30, 2012, shows the birth of Tropical Storm Sandy in the Caribbean Sea, the intensification and movement of Sandy in the Atlantic Ocean along the U.S. East Coast, and the landfall of Hurricane Sandy in New Jersey on Oct. 29. This visualization was created by the NASA GOES Project at NASA Goddard Space Flight Center, Greenbelt, Md., using observations from NOAA's GOES-13 and GOES-15 satellites.
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