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Survey view of Bays 13 and 15 on the S1 Truss

CAPE CANAVERAL, Fla. – In high bay 4 of the Vehicle Assembly Building at NASA's Kennedy Space Center in Florida, the framework known as the "birdcage" lowers the Ares I-X simulator crew module-launch abort system, or CM-LAS, onto the simulator service module-service adapter stack. Ares I-X is the flight test for the Ares I. The I-X flight will provide NASA an early opportunity to test and prove hardware, facilities and ground operations associated with Ares I. The launch of the 327-foot-tall, full-scale Ares I-X is targeted for August 2009. Photo credit: NASA/Kim Shiflett KSC-2009-3123

VANDENBERG AIR FORCE BASE, Calif. – A half section of the 10-foot-diameter fairing for NASA's Soil Moisture Active Passive mission, or SMAP, is attached to a crane during preparations to hoist it into the environmental enclosure at the top of the mobile service tower at Space Launch Complex 2 on Vandenberg Air Force Base in California. The fairing will protect the SMAP spacecraft from the heat and aerodynamic pressure generated during its ascent to orbit aboard a United Launch Alliance Delta II rocket. SMAP will provide global measurements of soil moisture and its freeze/thaw state. These measurements will be used to enhance understanding of processes that link the water, energy and carbon cycles, and to extend the capabilities of weather and climate prediction models. SMAP data will also be used to quantify net carbon flux in boreal landscapes and to develop improved flood prediction and drought monitoring capabilities. Launch is scheduled for no earlier than November 2014. To learn more about SMAP, visit http://smap.jpl.nasa.gov. Photo credit: NASA/Randy Beaudoin KSC-2014-3467

CAPE CANAVERAL, Fla. – In the Vehicle Assembly Building's High Bay 4 at NASA's Kennedy Space Center in Florida, a crane lifts Super Stack 2, part of the Ares I-X upper stage. The stack is being moved across the transfer aisle for attachment to Super Stack 1 in High Bay 3. Beneath is seen Super Stack 3 and at left is the crew module-launch abort system, or CM-LAS, and simulator service module-service adapter stack. The upper stage comprises five super stacks, which are integrated with the four-segment solid rocket booster first stage on the mobile launch platform. Ares I-X is the test vehicle for the Ares I, which is part of the Constellation Program to return men to the moon and beyond. The Ares I-X flight test is targeted for Oct. 31, pending formal NASA Headquarters approval. Photo credit: NASA/Tim Jacobs KSC-2009-4442

KENNEDY SPACE CENTER, FLA. - External Tank 118 (ET-118) is lifted from its cell in the Vehicle Assembly Building in order to place it on a transporter. The tank will be transferred to NASA’s Michoud Assembly Facility in New Orleans. The tank is being installed with an improved bipod fitting, which connects the external fuel tank to the Shuttle during launch. The new design, a significant milestone in the effort to return the Shuttle to safe flight, replaces the foam that was used to prevent ice buildup on the tank’s bipod fittings with four rod-shaped heaters. The heaters are being retrofitted on the 11 existing tanks and incorporated into the manufacture of all new tanks. KSC-04pd2128

Survey view of Bays 13 and 15 on the S1 Truss

VANDENBERG AIR FORCE BASE, Calif. – Inside the Astrotech payload processing facility on Vandenberg Air Force Base in California, engineers and technicians use a crane to move NASA's Soil Moisture Active Passive, or SMAP, spacecraft. SMAP will launch on a Delta II 7320 configuration vehicle featuring a United Launch Alliance first stage booster powered by an Aerojet Rocketdyne RS-27A main engine and three Alliant Techsystems, or ATK, strap-on solid rocket motors. Once on station in Earth orbit, SMAP will provide global measurements of soil moisture and its freeze/thaw state. These measurements will be used to enhance understanding of processes that link the water, energy and carbon cycles, and to extend the capabilities of weather and climate prediction models. SMAP data also will be used to quantify net carbon flux in boreal landscapes and to develop improved flood prediction and drought monitoring capabilities. Launch from Space Launch Complex 2 is targeted for Jan. 29, 2015. To learn more about SMAP, visit http://smap.jpl.nasa.gov Photo credit: NASA/ Randy Beaudoin KSC-2014-4285

CAPE CANAVERAL, Fla. – In the Vehicle Assembly Building's High Bay 3 at NASA's Kennedy Space Center in Florida, a crane lowers Super Stack 2, part of the Ares I-X upper stage, for integration with Super Stack 1. The upper stage comprises five super stacks, which are integrated with the four-segment solid rocket booster first stage on the mobile launch platform. Ares I-X is the test vehicle for the Ares I, which is part of the Constellation Program to return men to the moon and beyond. The Ares I-X flight test is targeted for Oct. 31, pending formal NASA Headquarters approval. Photo credit: NASA/Tim Jacobs KSC-2009-4444

CAPE CANAVERAL, Fla. - In the Space Shuttle Main Engine Processing Facility at NASA's Kennedy Space Center in Florida, a main engine is secured to a transporter and ready for its move to Orbiter Processing Facility Bay 3. There, it will be installed in space shuttle Discovery during processing for the shuttle's STS-131 mission to the International Space Station. The seven-member STS-131 crew will deliver a Multi-Purpose Logistics Module filled with resupply stowage platforms and racks to be transferred to locations around the station. Three spacewalks will include work to attach a spare ammonia tank assembly to the station's exterior and return a European experiment from outside the station's Columbus module. Discovery's launch, targeted for March 18, 2010, will initiate the 33rd shuttle mission to the station. For information on the STS-131 mission and crew, visit http://www.nasa.gov/mission_pages/shuttle/shuttlemissions/sts131/index.html. Photo credit: NASA/Jim Grossmann KSC-2009-6697

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Epedition 11 Soyuz Transport. NASA public domain image colelction.

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Summary

The Soyuz TMA-6 vehicle is seen on the launch pad at the Baikonur Cosmodrome in Kazakhstan, Wednesday, April 13, 2005, as preparations continued for the April 15 launch to send Expedition 11 Commander Sergei Krikalev, Flight Engineer John Phillips and European Space Agency Astronaut Roberto Vittori, of Italy, to the International Space Station. Krikalev and Phillips will spend six months in space and greet the first Shuttle crew to fly in more than two years when it arrives at the station, while Vittori spends eight days on the station under a commercial contract between ESA and the Russian Federal Space Agency. Photo Credit: (NASA/Bill Ingalls)

Over its sixty-year history, primarily classified military The Soviet space program was responsible for a number of pioneering accomplishments in space flight, including the first intercontinental ballistic missile (R-7), first satellite (Sputnik 1), first animal in Earth orbit (the dog Laika on Sputnik 2), first human in space and Earth orbit (cosmonaut Yuri Gagarin on Vostok 1), first woman in space and Earth orbit (cosmonaut Valentina Tereshkova on Vostok 6), first spacewalk (cosmonaut Alexey Leonov on Voskhod 2), first Moon impact (Luna 2), first image of the far side of the moon (Luna 3) and unmanned lunar soft landing (Luna 9), first space rover (Lunokhod 1), first sample of lunar soil automatically extracted and brought to Earth (Luna 16), and first space station (Salyut 1). Further notable records included the first interplanetary probes: Venera 1 and Mars 1 to fly by Venus and Mars, respectively, Venera 3 and Mars 2 to impact the respective planet surface, and Venera 7 and Mars 3 to make soft landings on these planets.

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soyuz tma 6 baikonur cosmodrome expedition 11 preflight kazakhstan expedition 11 baikonur roscosmos russian federal space agency soyuz launch pad soyuz rocket hq bill ingalls russian space program epedition soyuz transport high resolution rocket engines rocket technology rocket launch nasa
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Date

12/04/2005
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Soviet Space

The Soviet space program
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NASA
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Link

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

label_outline Explore Epedition, Soyuz Tma 6, Expedition 11 Preflight

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soyuz tma 6 baikonur cosmodrome expedition 11 preflight kazakhstan expedition 11 baikonur roscosmos russian federal space agency soyuz launch pad soyuz rocket hq bill ingalls russian space program epedition soyuz transport high resolution rocket engines rocket technology rocket launch nasa