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Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Saturn's moon Epimetheus casts a shadow across colorful rings in thisimage taken before the planet's August 2009 equinox.Epimetheus (113 kilometers, or 70 miles across) is visible as a small dotat the center of the bottom of the image.The novel illumination geometry that accompanies equinox lowers the sun'sangle to the ringplane, significantly darkens the rings, and causesout-of-plane structures to look anomalously bright and cast shadows acrossthe rings. These scenes are possible only during the few months before andafter Saturn's equinox, which occurs only once in about 15 Earth years.Before and after equinox, Cassini's cameras have spotted not only thepredictable shadows of some of Saturn's moons (see PIA11657), but also the shadows of newly revealed vertical structures in the ringsthemselves (see PIA11665).Images taken using red, green and blue spectral filters were combined tocreate this natural color view. This view looks toward the southern,sunlit side of the rings from about 39 degrees below the ringplane.The images were obtained with the Cassini spacecraft wide-angle camera onJune 8, 2009 at a distance of approximately 725,000 kilometers (450,000miles) from Saturn. Image scale is 40 kilometers (25 miles) per pixel.The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the mission for NASA's Science Mission Directorate, Washington, D.C. The Cassini orbiter and its two onboard cameras were designed, developed and assembled at JPL. The imaging operations center is based at the Space Science Institute in Boulder, Colo.For more information about the Cassini-Huygens mission visit saturn.jpl.nasa.gov. The Cassini imaging team homepage is at ciclops.org.credit: NASA/JPL/Space Science Institute
Image Addition Date:
2010-01-01
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Venus, Mars, and Jupiter from the north end of Beacon Hill.
CAMERA: Olympus OM-1 SLR
LENS: 50 mm, f/1.4
FILM TYPE: 35mm color negative
FILM BRAND: unknown
EXPOSURE: unrecorded
FILE NO.: 91-7 #4
Cute little smiley face in the skies of Bangkok, Thailand. December 1st, 2008.
Jupiter and Venus appear together over the crescent moon. Some historians believe a similar conjunction as this may have converged to create the "Star of Bethlehem" in June of 2 BC. For those in Australia, & Asia it appears as a smiley, for those in North America it is inverted and appears as a frowney.
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
The vast South Dakota sky reveals many wonders of a much bigger universe to keep us humble. Venus and Jupiter grace the eastern horizon over Brandon for the early risers!
David Larsen - Sioux Falls
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
NASA Goddard Space Flight Center employees volunteered at Maryland Day on Saturday, April 30, 2016. Maryland Day is an annual, one-day open house held at the University of Maryland in College Park, Maryland. The event features free, entertaining events geared toward learning and exploration.
At the NASA exhibits, Maryland Day attendees could explore interactive displays related to Earth science, heliophysics, planetary science, engineering and technology, and exploration and space communications.
Guests at the Engineering and Technology booth had the opportunity to drive a 14-inch robot with four motors and a gripper to pick up objects. They also could ask engineers at the exhibit questions about NASA technology, robots and their applications in space.
Credit: NASA/Goddard/Jenny Hottle
NASA Goddard Space Flight Center enables NASA’s mission through four scientific endeavors: Earth Science, Heliophysics, Solar System Exploration, and Astrophysics. Goddard plays a leading role in NASA’s accomplishments by contributing compelling scientific knowledge to advance the Agency’s mission.
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Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Sunlight scatters through Saturn's rings, emerging on the unilluminated
side. Prometheus (102 kilometers, or 63 miles across, lower right) and
Pandora (84 kilometers, or 52 miles across, upper left) are visible here,
respectively internal and external to the narrow F ring.
This view looks toward the rings from about 17 degrees above the
ringplane. The planet's shadow darkens the rings near upper left.
The image was taken in visible green light with the Cassini spacecraft
wide-angle camera on Jan. 20, 2008. The view was obtained at a distance of
approximately 1.8 million kilometers (1.1 million miles) from Saturn.
Image scale is 103 kilometers (64 miles) per pixel.
The Cassini-Huygens mission is a cooperative project of NASA, the European
Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory,
a division of the California Institute of Technology in Pasadena, manages
the mission for NASA's Science Mission Directorate, Washington, D.C. The
Cassini orbiter and its two onboard cameras were designed, developed and
assembled at JPL. The imaging operations center is based at the Space
Science Institute in Boulder, Colo.
For more information about the Cassini-Huygens mission visit
The Cassini imaging team homepage is at ciclops.org.
credit: NASA/JPL/Space Science Institute
The serene beauty of Saturn invites the Cassini spacecraft's gaze as the
spacecraft hurtles through this dynamic system, studying the giant
planet's rings, moons, atmosphere, and magnetosphere.
The icy moon Mimas (396 kilometers, or 246 miles across) is on the
planet's near side, about 180,000 kilometers (112,000 miles) closer to
Cassini than Saturn, in this scene.
The view looks toward the sunlit side of the rings from less than a degree
below the ringplane. Images taken using red, green and blue spectral
filters were combined to create this natural color view. The images were
obtained with the Cassini spacecraft wide-angle camera on July 22, 2007 at
a distance of approximately 927,000 kilometers (576,000 miles) from
Saturn. Image scale is 56 kilometers (35 miles) per pixel.
The Cassini-Huygens mission is a cooperative project of NASA, the European
Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory,
a division of the California Institute of Technology in Pasadena, manages
the mission for NASA's Science Mission Directorate, Washington, D.C. The
Cassini orbiter and its two onboard cameras were designed, developed and
assembled at JPL. The imaging operations center is based at the Space
Science Institute in Boulder, Colo.
For more information about the Cassini-Huygens mission visit
saturn.jpl.nasa.gov. The Cassini imaging team
homepage is at ciclops.org.
credit: NASA/JPL/Space Science Institute
A cloud is a visible mass of water droplets or frozen ice crystals suspended in the Earth's atmosphere above the surface of the Earth or other planetary body.
The shadows of Saturn's rings cast onto the planet appear as a thin band at the equator in this image taken as the planet approached its August 2009 equinox.The novel illumination geometry that accompanies equinox lowers the sun's angle to the ringplane, significantly darkens the rings, and causes out-of-plane structures to look anomalously bright and to cast shadows across the rings. These scenes are possible only during the few months before and after Saturn's equinox which occurs only once in about 15 Earth years. Before and after equinox, Cassini's cameras have spotted not only the predictable shadows of some of Saturn's moons (see PIA11657), but also the shadows of newly revealed vertical structures in the rings themselves (see PIA11665). For an earlier view of the rings' wide shadows draped high on the northern hemisphere, see PIA09793.The planet's southern hemisphere can be seen through the transparent D ring in the lower right of the image. The rings have been brightened by a factor of 9.5 relative to the planet to enhance visibility.This view looks toward the northern, unilluminated side of the rings from about 30 degrees above the ringplane.Images taken using red, green and blue spectral filters were combined to create this natural color view. The images were obtained with the Cassini spacecraft wide-angle camera on July 18, 2009 at a distance of approximately 2.1 million kilometers (1.3 million miles) from Saturn. Image scale is 122 kilometers (76 miles) per pixel.The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the mission for NASA's Science Mission Directorate, Washington, D.C. The Cassini orbiter and its two onboard cameras were designed, developed and assembled at JPL. The imaging operations center is based at the Space Science Institute in Boulder, Colo.For more information about the Cassini-Huygens mission visit saturn.jpl.nasa.gov. The Cassini imaging team homepage is at ciclops.org.credit: NASA/JPL/Space Science Institute
Image Addition Date:
2010-08-27
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
A new session of Pangaea geology field training moved to Lofoten, Norway, to scout for new traverses for the Pangaea analogue complement.
The team, consisting of planetary geologists and training experts, is preparing space farers for lunar exploration.
Lofoten shares many geological features with lunar highlands, such as the Apollo 16 landing site, making it a perfect site to train astronauts on lunar geology.
Pangaea instructors Matteo Massironi , Riccardo Pozzobon, and Fransceco Sauro, as well as petrology professor and local expert KÃ¥re Kullerud are guiding ESA astronaut Matthias Maurer through interesting geological sites in the Nusfjord, an area containing primitive crust rock formations, including anorthosites, which are known to be typical lunar highland rocks.
The Pangaea course is designed to provide European astronauts with introductory and practical knowledge of Earth and planetary geology to prepare them to become effective partners of planetary scientists and engineers in designing the next exploration missions.
The course also aims to give astronauts a solid knowledge in the geology of the Solar System from leading European scientists.
Credits: ESA–S. Sechi
Enceladus hangs like a single bright pearl against the golden-brown canvas
of Saturn and its icy rings. Visible on Saturn is the region where
daylight gives way to dusk. Above, the rings throw thin shadows onto the
planet.
Icy Enceladus is 505 kilometers (314 miles) across.
Images taken using red, green and blue spectral filters were combined to
create this natural color view. The images were taken using the Cassini
spacecraft wide-angle camera on Jan. 17, 2006 at a distance of
approximately 200,000 kilometers (100,000 miles) from Enceladus. The image
scale is 10 kilometers (6 miles) per pixel.
The Cassini-Huygens mission is a cooperative project of NASA, the European
Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory,
a division of the California Institute of Technology in Pasadena, manages
the mission for NASA's Science Mission Directorate, Washington, D.C. The
Cassini orbiter and its two onboard cameras were designed, developed and
assembled at JPL. The imaging operations center is based at the Space
Science Institute in Boulder, Colo.
For more information about the Cassini-Huygens mission visit
saturn.jpl.nasa.gov. The Cassini imaging team
homepage is at ciclops.org.
credit: NASA/JPL/Space Science Institute
small Art piece utilising the vignetting of my lens and the beautiful cloud formations, imagining planets as seen from an otherwise mundane scene. Playing with the boundaries of contrast and colour grading. this has been a fun play around and it should be taken as such.
Saturn and its rings manifest a rich interplay between shadow and light.
The rings shine on their unilluminated side by virtue of scattered
sunlight emerging from its passage through the ringplane. The dense B ring
does not allow much light to pass through, while the C ring is so sheer as
to allow the planet to be visible on its other side.
On the planet, shadows cast by the rings arc across the northern
hemisphere. Saturn's night side is illuminated in the south by light
reflected from the rings' sunlit face. The night-side northern hemisphere
is also lit faintly by the face of the rings that is seen in this image.
The planet's shadow extends across the ringplane toward right.
Several of Saturn's inner moons are visible in this view (from top to
bottom): Mimas (397 kilometers, or 247 miles across), Pandora (84
kilometers, or 52 miles across), and Epimetheus (116 kilometers, or 72
miles across).
This view looks toward the rings from about 19 degrees above the
ringplane.
The image was taken in visible green light with the Cassini spacecraft
wide-angle camera on April 13, 2007 at a distance of approximately 1.9
million kilometers (1.2 million miles) from Saturn. Image scale is 107
kilometers (67 miles) per pixel.
The Cassini-Huygens mission is a cooperative project of NASA, the European
Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory,
a division of the California Institute of Technology in Pasadena, manages
the mission for NASA's Science Mission Directorate, Washington, D.C. The
Cassini orbiter and its two onboard cameras were designed, developed and
assembled at JPL. The imaging operations center is based at the Space
Science Institute in Boulder, Colo.
For more information about the Cassini-Huygens mission visit
saturn.jpl.nasa.gov. The Cassini imaging team
homepage is at ciclops.org.
credit: NASA/JPL/Space Science Institute
Trying to reproduce the Apollo17 picture of NASA astronaut Harrison Schmitt with ESA astronaut Matthias Maurer.
A new session of Pangaea geology field training moved to Lofoten, Norway, to scout for new traverses for the Pangaea analogue complement.
The team, consisting of planetary geologists and training experts, is preparing space farers for lunar exploration.
Lofoten shares many geological features with lunar highlands, such as the Apollo 16 landing site, making it a perfect site to train astronauts on lunar geology.
Pangaea instructors Matteo Massironi , Riccardo Pozzobon, and Fransceco Sauro, as well as petrology professor and local expert KÃ¥re Kullerud are guiding ESA astronaut Matthias Maurer through interesting geological sites in the Nusfjord, an area containing primitive crust rock formations, including anorthosites, which are known to be typical lunar highland rocks.
The Pangaea course is designed to provide European astronauts with introductory and practical knowledge of Earth and planetary geology to prepare them to become effective partners of planetary scientists and engineers in designing the next exploration missions.
The course also aims to give astronauts a solid knowledge in the geology of the Solar System from leading European scientists.
Credits: ESA–S. Sechi
Gisela Pösges of Geopark Ries in western Bavaria, Germany, sits next to PANGAEA trainees during a lesson on Earth geology.
The lessons are followed by a trip to the Ries impact crater, that was also visited by Apollo 14 astronauts in 1970.
The third edition of the PANGAEA campaign – named after the ancient supercontinent – helps participants build their understanding of planetary geology, collect and document interesting rock samples, and assess the most likely places to find traces of life on other planets.
Leading European planetary geologists equip astronauts with a geologist’s eye to see, feel and understand the building blocks of our Solar System.
Copyright: ESA – S. Sechi
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Explore@NASAGoddard celebrates the 25th anniversary of the launch of the Hubble Space Telescope. All areas of Goddard’s research – Earth science, heliophysics, planetary science, astrophysics, and engineering and technology – will be presented, as each discipline plays a critical part in NASA's ongoing journey to reach new heights.
Credit: NASA/Goddard/Jay Friedlander
Deep in the morning twilight of August 18, 2014, the planets Vernus and Jupiter formed an impressive pair, with a distance of just 14 arc minutes (i.e., less than half the Moon's apparent diameter). Venus shines almost seven times brighter than Jupiter.
In this photo, the planets are rising over the the Seetal Alps in Styria, Austria. The shilouette of the village Zeutschach is faintly visible in the foreground.
One second exposure with Canon EOS 550D at ISO 200, 50mm, f/4.0, Cokin P 820 Diffusor. The medium focal length used for this shot gives a good impression how close the two planets appeared to the naked eye - although I have to admit that the photo can hardly reproduce the awe of seeing the brightest planets so close together.