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NASA's Lunar Reconnaissance Orbiter (LRO) spacecraft/ Lunar Orbiter Laser Altimeter (LOLA)

Space Shuttle Columbia, S109E5307 - STS-109 - #NAME?

CAPE CANAVERAL, Fla. - Inside the Astrotech payload processing facility near NASA’s Kennedy Space Center in Florida, technicians deploy one of four solar panels on the Radiation Belt Storm Probes, or RBSP, spacecraft A. Deploying these arrays is standard procedure to ensure they work properly on Earth before they head into space. NASA’s RBSP mission will help us understand the sun’s influence on Earth and near-Earth space by studying the Earth’s radiation belts on various scales of space and time. As the spacecraft orbits Earth, the panels will continuously face the sun to provide constant power to its instruments. RBSP will begin its mission of exploration of Earth’s Van Allen radiation belts and the extremes of space weather after its launch aboard a United Launch Alliance Atlas V rocket. Launch is targeted for Aug. 23. For more information, visit http://www.nasa.gov/rbsp. Photo credit: NASA/Charisse Nahser KSC-2012-3693

STS084-312-002 - STS-084 - Interior views of Mir Space Station module

STS109-708-061 - STS-109 - View of Hubble solar array taken by the STS-109 crew at sunset

S82E5452 - STS-082 - HST,survey views of the Hubble Space Telescope on Flight Day 5

Views of the FGB/Zara and PMA 1 modules during flyaround

ENGINEERS USING A STATE-OF-THE-ART VERTICAL WELDING TOOL AT THE MARSHALL SPACE FLIGHT CENTER IN HUNTSVILLE, ALA., MOVE A "PATHFINDER" VERSION OF THE ADAPTER DESIGN THAT WILL BE USED ON TEST FLIGHTS OF THE ORION SPACECRAFT AND NASA'S SPACE LAUNCH SYSTEM 1201013

sts121-325-024 - STS-121 - Progress Vehicle with the orbiter Discovery in background taken during STS-121 / Expedition 13 joint operations

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KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE check the placement of the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad for further processing. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE position the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad, for further processing. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE remove sections of the transportation canister from around the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE prepare to remove the canister from around the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE prepare to remove the canister from around the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE prepare to begin further processing of the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. Sections of the transportation canister used in the move are in the foreground. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE check the placement of the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad for further processing. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - In the NASA Spacecraft Hangar AE, the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad, is uncovered by workers following its arrival. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE lift the protective cover from around the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE begin the next phase of processing of the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

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KENNEDY SPACE CENTER, FLA. - Workers in NASA Spacecraft Hangar AE begin the next phase of processing of the Space Infrared Telescope Facility (SIRTF), which has been returned to the hangar from the launch pad. SIRTF will remain in the clean room until it returns to the pad in early August. One of NASA's largest infrared telescopes to be launched, SIRTF will obtain images and spectra by detecting the infrared energy, or heat, radiated by objects in space.

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kennedy space center workers spacecraft hangar nasa spacecraft hangar ae phase telescope telescope facility sirtf launch pad room returns telescopes images spectra energy heat objects high resolution satellite nasa florida cape canaveral
date_range

Date

02/05/2003
place

Location

create

Source

NASA
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https://images.nasa.gov/
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Public Domain Dedication (CC0)

label_outline Explore Nasa Spacecraft Hangar Ae, Spectra, Telescope Facility

An ophthalmologist and medical technicians prepare to remove a cataract from a patient in an operating room aboard the hospital ship USNS MERCY (T-AH-19). The ship is visiting various ports in the Philippines during the first phase of its five-month humanitarian medical service and training mission. While in the Philippines, U.S. Navy, Army and Air Force medical personnel embarked aboard the MERCY are providing treatment for indigent Filipinos, both ashore and aboard ship

A small airplane flying low to the ground. War Production FSA/OWI Photograph

NASA astronaut and Mir 24 crew member David Wolf, M.D., enjoys a moment with the media at the Skid Strip at Cape Canaveral Air Station on Feb. 1 moments before his departure for Johnson Space Center. Other STS-89 crew members surrounding Dr. Wolf include, left to right, Pilot Joe Edwards Jr.; Commander Terrence Wilcutt; and Mission Specialist Bonnie Dunbar, Ph.D. In the red shirt behind Edwards is JSC Director of Flight Crew Operations David Leestma. The STS-89 crew that brought Dr. Wolf back to Earth arrived at KSC aboard the orbiter Endeavour Jan. 31, concluding the eighth Shuttle-Mir docking mission. STS-89 Mission Specialist Andrew Thomas, Ph.D., succeeded Dr. Wolf on Mir and is scheduled to remain on the Russian space station until the STS-91 Shuttle mission returns in June 1998. In addition to the docking and crew exchange, STS-89 included the transfer of science, logistical equipment and supplies between the two orbiting spacecrafts KSC-pa-wolf-17

Petty Officer 3rd Class Nicholas Haddad prepares to fight a simulated fire during a general quarters drill aboard the USS Ronald Reagan (CVN 76), during the final phase of Unit Level Training Assessment-Sustainment (ULTRA-S).

S35-22-011 - STS-035 - STS-35 ASTRO-1 telescopes deployed from OV-102's payload bay

Somes, Joseph. Deputy & then Governor of N.Z. Co

Crewmen stand on the deck of the Nuclear-powered Strategic Missile Submarine USS ALABAMA (SSBN 731) as the vessel returns to port after completing the 100th Trident ballistic missile submarine patrol

S35-22-013 - STS-035 - STS-35 ASTRO-1 telescopes deployed from OV-102's payload bay

US Navy (USN) CHIEF Hospital Corpsman (HMC) Mike Cockrill, Mobile Diving and Salvage Unit Two (MDSU-2), holds his MK 21 Mod One diving helmet, as the prepares for a dive, onboard the Derrick Barge, WOTAN, during Phase II of the Monitor 2001 Expedition

Children of crew members watch the arrival of the nuclear-powered aircraft carrier USS CARL VINSON (CVN 70) as the ship returns to home port

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, an overhead crane moves the heat shield toward a platform at left. The heat shield was removed from the Phoenix Mars Lander spacecraft at right. The Phoenix mission is the first project in NASA's first openly competed program of Mars Scout missions. Phoenix will land in icy soils near the north polar permanent ice cap of Mars and explore the history of the water in these soils and any associated rocks, while monitoring polar climate. Landing is planned in May 2008 on arctic ground where a mission currently in orbit, Mars Odyssey, has detected high concentrations of ice just beneath the top layer of soil. It will serve as NASA's first exploration of a potential modern habitat on Mars and open the door to a renewed search for carbon-bearing compounds, last attempted with NASA’s Viking missions in the 1970s. A stereo color camera and a weather station will study the surrounding environment while the other instruments check excavated soil samples for water, organic chemicals and conditions that could indicate whether the site was ever hospitable to life. Microscopes can reveal features as small as one one-thousandth the width of a human hair. Launch of Phoenix aboard a Delta II rocket is targeted for Aug. 3 from Cape Canaveral Air Force Station in Florida. Photo credit: NASA/George Shelton KSC-07pd1087

Skylab. NASA Skylab space station

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kennedy space center workers spacecraft hangar nasa spacecraft hangar ae phase telescope telescope facility sirtf launch pad room returns telescopes images spectra energy heat objects high resolution satellite nasa florida cape canaveral