KENNEDY SPACE CENTER, FLA. -- Workers prepare to remove a Pegasus XL Expendable Launch Vehicle from the underside of an Orbital Sciences L-1011 aircraft.  The aircraft, with the launch vehicle attached, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003.  It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2001
KENNEDY SPACE CENTER, FLA. -- Workers prepare a Pegasus XL Expendable Launch Vehicle for detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2005
KENNEDY SPACE CENTER, FLA. -- A transporter is positioned below a Pegasus XL Expendable Launch Vehicle before its detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2006
KENNEDY SPACE CENTER, FLA. -- A transporter is repositioned below a Pegasus XL Expendable Launch Vehicle before it is detached from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2010
KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle is moments away from being removed from the underside of an Orbital Sciences L-1011 aircraft.  The aircraft, with the launch vehicle attached, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003.  It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2002
KENNEDY SPACE CENTER, FLA. -- Workers begin the process to remove a Pegasus XL Expendable Launch Vehicle from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle attached, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2003
KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle is prepared for towing to the Multi-Purpose Payload Facility (MPPF) where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17.  It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2016
KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle is prepared for towing to the Multi-Purpose Payload Facility (MPPF) where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2015
KENNEDY SPACE CENTER, FLA. -- Workers complete the final steps to detach a Pegasus XL Expendable Launch Vehicle from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2012
KENNEDY SPACE CENTER, FLA. -- A container with the Solar Radiation and Climate Experiment (SORCE) spacecraft inside is moved into the Multi-Purpose Processing Facility at KSC.  The spacecraft will undergo final processing in the MPPF for launch. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1658
KENNEDY SPACE CENTER, FLA. -- Workers oversee the repositioning of a transporter below a Pegasus XL Expendable Launch Vehicle before its detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2009
KENNEDY SPACE CENTER, FLA. - Computers in the Multi-Purpose Processing Facility are set up to conduct a solar array test on the SORCE satellite, beyond the screening. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- In the Multi-Purpose Processing Facility at KSC, the Solar Radiation and Climate Experiment (SORCE) spacecraft rests in a horizontal position on a workstand after rotation and removal of its outer covering. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- Workers in the Multi-Purpose Processing Facility at KSC help guide the Solar Radiation and Climate Experiment (SORCE) spacecraft onto a workstand. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- Workers in clean room attire supervise the delivery of a Pegasus XL Expendable Launch Vehicle to the Multi-Purpose Payload Facility (MPPF).  Next, it will be moved into a highbay where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17.  It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with four instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2017
KENNEDY SPACE CENTER, FLA. -- Workers complete the process to detach a Pegasus XL Expendable Launch Vehicle from the underside of an Orbital Sciences L-1011 aircraft and lower it onto a transporter. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
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KENNEDY SPACE CENTER, FLA. - In the Multi-Purpose Processing Facility, workers adjust the SORCE satellite for a solar array test.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. - Workers in the Multi-Purpose Processing Facility return to the SORCE satellite after solar array testing is complete. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. --  A truck containing the Solar Radiation and Climate Experiment (SORCE) spacecraft approaches the Multi-Purpose Processing Facility at KSC. The spacecraft will undergo final processing for launch. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1656
KENNEDY SPACE CENTER, FLA. --  Workers in the Multi-Purpose Processing Facility at KSC lift the Solar Radiation and Climate Experiment (SORCE) spacecraft to move it to a workstand. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1661
KENNEDY SPACE CENTER, FLA. --  A container with the Solar Radiation and Climate Experiment (SORCE) spacecraft inside is offloaded at the Multi-Purpose Processing Facility at KSC. The spacecraft will undergo final processing for launch. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1657
KENNEDY SPACE CENTER, FLA. -- Workers reevaluate the placement of a transporter below a Pegasus XL Expendable Launch Vehicle before its detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2011
KENNEDY SPACE CENTER, FLA. -- Workers evaluate the placement of a transporter below a Pegasus XL Expendable Launch Vehicle before its detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2008
KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle sits atop a transporter following its arrival in the Multi-Purpose Payload Facility (MPPF).  Next, it will be moved into a highbay where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17.  It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2020
KENNEDY SPACE CENTER, FLA. - In the Multi-Purpose Processing Facility at KSC, workers unpack the Solar Radiation and Climate Experiment (SORCE) spacecraft.  SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1659
KENNEDY SPACE CENTER, FLA. - In the Multi-Purpose Processing Facility, the SORCE satellite undergoes a solar array test.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. - Workers in the Multi-Purpose Processing Facility at KSC look over the Solar Radiation and Climate Experiment (SORCE) spacecraft. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- In the Multi-Purpose Processing Facility at KSC, the Solar Radiation and Climate Experiment (SORCE) spacecraft is rotated from a vertical to horizontal position on a workstand. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle sits atop a transporter following its arrival in the Multi-Purpose Payload Facility (MPPF).  Next, it will be moved into a highbay where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17.  It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2019
KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle is seen moments after being detached from the underside of an Orbital Sciences L-1011 aircraft and lowered onto a transporter. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. Next, the vehicle will be towed to the Multi-Purpose Payload Facility (MPPF) where it will undergo testing, verification, and three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2014
KENNEDY SPACE CENTER, FLA. --  The Solar Radiation and Climate Experiment (SORCE) spacecraft sits in the Multi-Purpose Processing Facility at KSC after being removed from the transport container. SORCE arrived at Kennedy Space Center Oct. 26 to begin final processing.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle is prepared for its removal from the underside of an Orbital Sciences L-1011 aircraft as onlooking workers await their turns in the process. The aircraft, with the launch vehicle attached, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
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KENNEDY SPACE CENTER, FLA. - Computers in the Multi-Purpose Processing Facility monitor a solar array test on the SORCE satellite, beyond the screening. SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- Workers supervise the placement of a transporter below a Pegasus XL Expendable Launch Vehicle before its detachment from the underside of an Orbital Sciences L-1011 aircraft. The aircraft, with the launch vehicle nestled beneath, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17. The Pegasus XL will undergo three flight simulations prior to its scheduled launch in late January 2003. It will carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2007
KENNEDY SPACE CENTER, FLA. - In the Multi-Purpose Processing Facility, workers adjust the SORCE satellite for a solar array test.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA’s SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA’s Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
KSC-02pd1670
KENNEDY SPACE CENTER, FLA. - In the Multi-Purpose Processing Facility, workers prepare the SORCE satellite for a solar array test.  SORCE is equipped with four instruments that will measure variations in solar radiation much more accurately than anything now in use and observe some of the spectral properties of solar radiation for the first time. With data from NASA's SORCE mission, researchers should be able to follow how the Sun affects our climate now and in the future.  The SORCE project is managed by NASA's Goddard Space Flight Center.  The instruments on the SORCE spacecraft are built by the Laboratory for Atmospheric and Space Physics (LASP).  Launch of SORCE aboard a Pegasus XL rocket is scheduled for mid-December 2002.  Launch site is Cape Canaveral Air Force Station, Fla.
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KENNEDY SPACE CENTER, FLA. -- A Pegasus XL Expendable Launch Vehicle sits atop a transporter following its arrival in the Multi-Purpose Payload Facility (MPPF) where it will undergo testing, verification, and three flight simulations prior to its scheduled launch. The vehicle, nestled beneath an Orbital Sciences L-1011 aircraft, arrived at the Cape Canaveral Air Force Station Skid Strip on Dec. 17.  It is commissioned to carry NASA's Solar Radiation and Climate Experiment (SORCE) spacecraft into orbit in late January 2003. Built by Orbital Sciences Space Systems Group, SORCE will study and measure solar irradiance as a source of energy in the Earth's atmosphere with instruments built by the University of Colorado's Laboratory for Atmospheric and Space Physics (LASP).
KSC-02pd2018
Four Extreme Ultraviolet and X-ray Irradiance Sensors or EXIS instruments that will fly aboard four of NOAA's Geostationary Operational Environmental Satellite-R or GOES-R Series spacecraft were recently lined up like babies in a nursery.  The EXIS Team at NOAA's Laboratory for Atmospheric and Space Physics (LASP) in Boulder, Colorado took a short timeout during the week of January 20, 2014 to take advantage of a rare photo opportunity.  Each EXIS instrument will fly aboard one of the GOES-R series of spacecraft that include GOES-R, S, T, and U. All four EXIS instruments happened to be in the clean room at the same time. It is expected that this will probably be the last time that all four siblings will be in one place together as Flight Model 1 (seen on the left) is being shipped on February 3 to begin integration and testing onto the GOES-R spacecraft at a Lockheed Martin facility in Littleton, Colo.  The other instruments have already dispersed to other areas at LASP for continued build and test operations.    The EXIS instruments on the GOES-R series satellites are critical to understanding and monitoring solar irradiance in the upper atmosphere, that is, the power and effect of the Sun’s electromagnetic radiation per unit of area. EXIS will be able to detect solar flares that could interrupt communications and reduce navigational accuracy, affecting satellites, high altitude airlines and power grids on Earth.  On board the EXIS are two main sensors, the Extreme Ultraviolet Sensor (EUVS) and the X-Ray Sensor (XRS), which will help scientists monitor activity on the sun.  The GOES-R series is a collaborative development and acquisition effort between the National Oceanic and Atmospheric Administration and NASA. The GOES-R satellites will provide continuous imagery and atmospheric measurements of Earth’s Western Hemisphere and space weather monitoring.  For more information about the GOES-R series, visit:  <a href="http://www.goes-r.gov" rel="nofollow">www.goes-r.gov</a>  Credit: NOAA/NASA  <b><a href="http://www.nasa.gov/audience/formedia/features/MP_Photo_Guidelines.html" rel="nofollow">NASA image use policy.</a></b>  <b><a href="http://www.nasa.gov/centers/goddard/home/index.html" rel="nofollow">NASA Goddard Space Flight Center</a></b> 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.  <b>Follow us on <a href="http://twitter.com/NASAGoddardPix" rel="nofollow">Twitter</a></b>  <b>Like us on <a href="http://www.facebook.com/pages/Greenbelt-MD/NASA-Goddard/395013845897?ref=tsd" rel="nofollow">Facebook</a></b>  <b>Find us on <a href="http://instagram.com/nasagoddard?vm=grid" rel="nofollow">Instagram</a></b>
GOES EXIS Quadruplets Together in a Clean Room "Nursery"
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
NASA’s CLARREO Pathfinder (Calibration Absolute Radiance and Refractivity Observatory Pathfinder) undergoes prelaunch processing while secured on a test stand inside the Space Systems Processing Facility at the agency’s Kennedy Space Center in Florida on Thursday, Feb. 26, 2026. CLARREO Pathfinder will launch to the International Space Station aboard SpaceX's 34th commercial resupply services mission for NASA, where it will demonstrate an ability to take highly accurate measurements of sunlight reflected by Earth and the Moon.
CLARREO Pathfinder
CAPE CANAVERAL, Fla. – The Mars Atmosphere and Volatile Evolution, or MAVEN, mission is being prepared for its scheduled launch on Nov 18, 2013 from Cape Canaveral Air Force Station, Fla. atop a United Launch Alliance Atlas V rocket. Positioned in an orbit above the Red Planet, MAVEN will study the upper atmosphere of Mars in unprecedented detail. It will arrive at Mars in fall 2014. After a five-week transition period during which it will get into its final orbit, deploy booms, and check out the science instruments, MAVEN will carry out its one-Earth-year primary mission. MAVEN will have enough fuel to survive for another six years and will act as a data relay for spacecraft on the surface, as well as continue to take important science data.      MAVEN's principal investigator is based at the University of Colorado, Boulder's Laboratory for Atmospheric and Space Physics CU/LASP. The university provided science instruments and leads science operations, as well as education and public outreach, for the mission. NASA Goddard Space Flight Center NASA GSFC, Greenbelt, Md. manages the project and provided two of the science instruments for the mission. The University of California at Berkeley's Space Sciences Laboratory UCB/SSL provided science instruments for the mission. Lockheed Martin LM built the spacecraft and is responsible for mission operations. NASA's Jet Propulsion Laboratory NASA JPL in Pasadena, Calif., provides navigation support, Deep Space Network support, and Electra telecommunications relay hardware and operations. For more information, visit: http://www.nasa.gov/mission_pages/maven/main/index.html Image credit: NASA
KSC-2013-3838
The purple color in this animated GIF shows auroras across Mars' nightside as detected by the Imaging Ultraviolet Spectrograph instrument aboard NASA's MAVEN (Mars Atmosphere and Volatile EvolutioN) orbiter. The brighter the purple, the more auroras were present. Taken as waves of energetic particles from a solar storm were arriving at Mars, the sequence pauses at the end, when the wave of the most energetic particles arrived and overwhelmed the instrument with noise.  MAVEN took these images between May 14 and 20, 2024, as the spacecraft orbited below Mars, looking up at the nightside of the planet (Mars' south pole can be seen on the right, in full sunlight).  Animation available at https://photojournal.jpl.nasa.gov/catalog/PIA26304
MAVEN Detects Auroras During Solar Storm in 2024
Caption: MAVEN's Imaging UltraViolet Spectrograph obtained this image of Mars on July 13, 2016, when the planet appeared nearly full when viewed from the highest altitudes in the MAVEN orbit. The ultraviolet colors of the planet have been rendered in false color, to show what we would see with ultraviolet-sensitive eyes. The ultraviolet (UV) view gives several new perspectives on Mars. Valles Marineris, a two-thousand-mile canyon system, appears prominently across the middle of the image as a blue gash. The deep canyon appears blue due to the scattering of ultraviolet light by the atmosphere, so strong that we cannot make out the bottom of the canyon. The greenish cast of the planet as a whole is a combination of the reflection of the surface plus the atmospheric scattering. The three tall Tharsis volcanoes appear near the left edge, dotted by white clouds forming as the winds flow over them. Bright white polar caps appear at both poles, typical for this season, in which there is a transition from southern-hemisphere winter to summer. The magenta-colored region visible at the south pole shows where ozone is absorbing ultraviolet light — the same property of ozone that protects life on Earth from harmful UV radiation. While ozone tends to be destroyed by chemical processes in the winter on Earth, different atmospheric chemistry at Mars caused it to build up in the winter there. A hint of ozone is also visible near the north pole; more will accumulate there as winter is coming. IUVS obtains images of Mars every orbit when the sunlit portion of the planet is visible from high altitude.  Credits: NASA/Goddard/University of Colorado/LASP  Read more: <a href="http://go.nasa.gov/2d9aU1N" rel="nofollow">go.nasa.gov/2d9aU1N</a>  Today, NASA’s Mars Atmosphere and Volatile EvolutioN (MAVEN) mission completed one Mars year of science observations. One Mars year is just under two Earth years.  MAVEN launched on Nov. 18, 2013, and went into orbit around Mars on Sept. 21, 2014. During its time at Mars, MAVEN has answered many questions about the Red Planet.  “Taken together, the MAVEN results tell us that loss of gas from the atmosphere to space has been the major force behind the climate having changed from a warm, wet environment to the cold, dry one that we see today,” said Bruce Jakosky, MAVEN principal investigator, from the University of Colorado in Boulder.  NASA recently declared that MAVEN had achieved mission success during its primary mission.  Mission success means that the spacecraft operated as intended, made the expected science measurements, and achieved its proposed science objectives.  <b><a href="http://www.nasa.gov/audience/formedia/features/MP_Photo_Guidelines.html" rel="nofollow">NASA image use policy.</a></b>  <b><a href="http://www.nasa.gov/centers/goddard/home/index.html" rel="nofollow">NASA Goddard Space Flight Center</a></b> 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.  <b>Follow us on <a href="http://twitter.com/NASAGoddardPix" rel="nofollow">Twitter</a></b>  <b>Like us on <a href="http://www.facebook.com/pages/Greenbelt-MD/NASA-Goddard/395013845897?ref=tsd" rel="nofollow">Facebook</a></b>  <b>Find us on <a href="http://instagrid.me/nasagoddard/?vm=grid" rel="nofollow">Instagram</a></b>
NASA’S MAVEN Spacecraft Celebrates One Mars Year of Science