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This graphic shows Venus, Earth and its Moon, and Mars.

JPL
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The Moon and Venus, center, are seen in conjunction above the Washington Monument, Monday, May 18, 2026, as viewed from the Mary W. Jackson NASA Headquarters Building in Washington. Photo Credit: (NASA/Bill Ingalls)

HQ
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The Moon and Venus, left, are seen in conjunction above the Washington Monument, Monday, May 18, 2026, as viewed from the Mary W. Jackson NASA Headquarters Building in Washington. Photo Credit: (NASA/Bill Ingalls)

HQ
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UT154 solar test CO 934_0253 This is a sample low res test image from NASA Astronaut Don Petttit shot from onboard the International Space Station on June 5, 2012. Petttit, who had the foresight to bring a solar filter for his camera, will be capturing the …

GSFC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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Artist: Rick Guidice Artist conception of surface of Venus.

ARC
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This image covers much of Ovda Regio, which forms the western part of Aphrodite Terra captured by NASA's Magellan spacecraft.

JPL
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This global view of Venus, centered at 270 degrees east longitude, is a compilation of data from several sources. Magellan synthetic aperature radar mosaics from the first cycle of Magellan mapping are mapped onto a computer-simulated globe to create the imag…

JSC
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This mosaic from NASA Magellan data is in the Lavinia region of Venus. Three large impact craters can be seen located in a region of fractured plains.

JPL
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This is a full resolution radar mosaic of the Lavinia region of Venus as seen by NASA Magellan spacecraft. This area shows a diverse set of geologic features.

JPL
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This perspective view of Venus, generated by computer from NASA Magellan data and color-coded with emissivity, shows part of the lowland plains in Sedna Planitia.

JPL
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This perspective view of Venus, generated by computer from NASA Magellan data and color-coded with emissivity, shows part of the lowland plains in Sedna Planitia.

JPL
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On June 5, 2012, Hinode captured this stunning view of the transit of Venus -- the last instance of this rare phenomenon until 2117. Hinode is a joint JAXA/NASA mission to study the connections of the sun's surface magnetism, primarily in and around sunspots.…

GSFC
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NASA's Magellan imaged this multiple-floored, irregular impact crater at latitude 16.4 degrees north, longitude 352.1 degrees east, during orbits 481 and 482 on 27 September 1990.

JPL
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NASA image captured June 5, 2012 at 212357 UTC (about 5:24 p.m. EDT). On June 5-6 2012, SDO is collecting images of one of the rarest predictable solar events: the transit of Venus across the face of the sun. This event happens in pairs eight years apart th…

GSFC
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NASA image captured June 5, 2012. On June 5-6 2012, SDO is collecting images of one of the rarest predictable solar events: the transit of Venus across the face of the sun. This event happens in pairs eight years apart that are separated from each other by …

GSFC
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This perspective view of Venus, generated by computer from NASA Magellan data and color-coded with emissivity, shows the boundary between the lowland plains and characteristic Venusian highland terrain in Ovda Region.

JPL
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This perspective view of Venus, generated by computer from NASA Magellan data and color-coded with emissivity, shows the impact crater Markham, named after the English aviator Beryl Markham.

JPL
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Contenido y metadatos proporcionados por la NASA Image and Video Library.