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STS091-377-012 - STS-091 - Documentation of Mir Space Station interior

S128E007394 - STS-128 - Hernandez in MPLM

S117E07544 - STS-117 - Reilly installs a water to hydrogen vent on the outside of the U.S. Laboratory during EVA 3

POTTING FLAMMABILITY TESTS PRE and POST

S122E008746 - STS-122 - Walheim during EVA 3

LAS VEGAS, Nev. – Engineers prepare a mock-up of The Boeing Company's CST-100 spacecraft for the third and final series of simulated contingency water landing scenarios at Bigelow Aerospace's headquarters near Las Vegas. The CST-100 is designed for ground landings, but could splash down on the water, if necessary. The tests are part of the company’s ongoing work supporting its funded Space Act Agreement with NASA’s Commercial Crew Program, or CCP, during the Commercial Crew Integrated Capability, or CCiCap, initiative. CCP is intended to lead to the availability of commercial human spaceflight services for government and commercial customers to low-Earth orbit. Future development and certification initiatives eventually will lead to the availability of human spaceflight services for NASA to send its astronauts to the International Space Station, where critical research is taking place daily. For more information about CCP, go to http://www.nasa.gov/commercialcrew. Photo credit: Boeing/Kelly George KSC-2013-3511

STS073-315-010 - STS-073 - FSDC, Payload Commander Kathy Thornton works with glovebox experiment

CARD 2 OF 2. NASA public domain image. Kennedy space center.

s133E007858 - STS-133 - Interior of PMM (Permanent Multipurpose Module) Leonardo

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KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), workers attach an overhead crane to the multi-purpose logistics module Donatello in order to move it to a payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0528

KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the overhead crane lowers the multi-purpose logistics module Donatello into the waiting payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0532

KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the overhead crane carries the multi-purpose logistics module Donatello toward the open doors of the payload canister at left. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0531

KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the overhead crane lifts the multi-purpose logistics module Donatello from its work stand to move it to a payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0529

KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the overhead crane carries the multi-purpose logistics module Donatello from its work stand across the floor to a payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0530

KENNEDY SPACE CENTER, FLA. - An overhead crane carries the multi-purpose logistics module Raffaello toward a waiting payload canister in the Space Station Processing Facility at NASA's Kennedy Space Center. The module is being moved to the Operations and Checkout Building to make room in the SSPF for the arrival of elements from other ISS partners for future flights. Photo credit: NASA/Jim Grossmann KSC-06pd0524

KENNEDY SPACE CENTER, FLA. - An overhead crane lowers the multi-purpose logistics module Raffaello into a waiting payload canister in the Space Station Processing Facility at NASA's Kennedy Space Center. The module is being moved to the Operations and Checkout Building to make room in the SSPF for the arrival of elements from other ISS partners for future flights. Photo credit: NASA/Jim Grossmann KSC-06pd0525

KENNEDY SPACE CENTER, FLA. - An overhead crane lowers the multi-purpose logistics module Raffaello into a payload canister in the Space Station Processing Facility at NASA's Kennedy Space Center. The module is being moved to the Operations and Checkout Building to make room in the SSPF for the arrival of elements from other ISS partners for future flights . Photo credit: NASA/Jim Grossmann KSC-06pd0526

KENNEDY SPACE CENTER, FLA. - An overhead crane is moved into place above the multi-purpose logistics module Raffaello the Space Station Processing Facility at NASA's Kennedy Space Center. The module is being moved to the Operations and Checkout Building to make room in the SSPF for the arrival of elements from other ISS partners for future flights. Photo credit: NASA/Jim Grossmann KSC-06pd0521

KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the multi-purpose logistics module Donatello is being prepared for a move to a payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann KSC-06pd0527

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KENNEDY SPACE CENTER, FLA. - In NASA Kennedy Space Center's Space Station Processing Facility (SSPF), the multi-purpose logistics module Donatello is being prepared for a move to a payload canister. Donatello is being transferred to the Operations and Checkout Building to make room in the SSPF for the arrival of elements for future flights from other ISS partners. Photo credit: NASA/Jim Grossmann

The International Space Station (ISS) is a habitable space station in low Earth orbit with an altitude of between 330 and 435 km (205 and 270 mi). It completes 15.54 orbits per day. Its first component launched into orbit in 1998, and the ISS is now the largest man-made body in low Earth orbit. The ISS consists of many pressurized modules, external trusses, solar arrays, and other components. ISS components have been launched by Russian Proton and Soyuz rockets, and American Space Shuttles. The ISS is a space research laboratory, the testing ground for technologies and systems required for missions to the Moon and Mars. The station has been continuously occupied for 16 years and 201 days since the arrival of Expedition 1 on 2 November 2000. This is the longest continuous human presence in low Earth orbit, having surpassed the previous record of 9 years and 357 days held by Mir. The station is serviced by a variety of visiting spacecraft: the Russian Soyuz and Progress, the American Dragon and Cygnus, the Japanese H-II Transfer Vehicle, and formerly the Space Shuttle and the European Automated Transfer Vehicle. It has been visited by astronauts, cosmonauts and space tourists from 17 different nations.

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kennedy space center nasa kennedy space center space station sspf logistics module donatello logistics module donatello move payload canister payload canister checkout room elements flights iss partners iss partners jim grossmann high resolution astronauts early renaissance renaissance nasa florida cape canaveral
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International Space Station

ISS - the largest man-made body in low Earth orbit
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label_outline Explore Logistics Module Donatello, Iss Partners, Sspf

STS098-345-025 - STS-098 - Jones and Polansky perform a LiOH Canister changeout on Atlantis' MDK

CAPE CANAVERAL, Fla. – In the White Room on the orbiter access arm of the fixed service structure on Launch Pad 39A at NASA's Kennedy Space Center in Florida, STS-127 Mission Specialist Julie Payette waits to finish suiting up before entering space shuttle Endeavour for the simulated launch countdown. The crew is at Kennedy for a launch dress rehearsal called the terminal countdown demonstration test, or TCDT, which includes the simulation, emergency exit training and equipment familiarization. Endeavour's STS-127 mission is the final of three flights dedicated to the assembly of the Japanese Kibo laboratory complex on the International Space Station. Endeavour's launch is scheduled for June 13 at 7:17 a.m. EDT. Photo credit: NASA/Troy Cryder KSC-2009-3528

KENNEDY SPACE CENTER, FLA. -- In the Space Station Processing Facility at NASA's Kennedy Space Center, members of the STS-124 crew get a close look at equipment on the Japanese Experiment Module, called Kibo, including the Remote Manipulator System, or RMS, two robotic arms that support operations on the outside of the Kibo. Crew members are at Kennedy for a crew equipment interface test that includes familiarization with tools and equipment that will be used on the mission. The STS-124 mission is the second of three flights that will launch components to complete the Japanese pressurized module, the Kibo laboratory. The mission will include two spacewalks to install the new lab and its remote manipulator system. The lab's logistics module, which will have been installed in a temporary location during STS-123, will be attached to the new lab. Photo credit: NASA/Kim Shiflett KSC-08pd0058

S73E5323 - STS-073 - DPM, film ruined in the canister for Spacelab experiment

STS065-297-006 - STS-065 - Walz performs Lioh canister changeout in Spacelab

KENNEDY SPACE CENTER, FLA. -- On the 195-foot level of the Fixed Service Structure on Launch Pad 39A, STS-92 Pilot Pamela Ann Melroy and Commander Brian Duffy learn more about the emergency egress training they and the rest of the crew have received. The training is part of Terminal Countdown Demonstration Test activities that also include a simulated countdown. STS-92 is scheduled to launch Oct. 5 at 9:38 p.m. EDT on the fifth flight to the International Space Station. It will carry two elements of the Space Station, the Integrated Truss Structure Z1 and the third Pressurized Mating Adapter. The mission is also the 100th flight in the Shuttle program KSC-00pp1382

KENNEDY SPACE CENTER, FLA. - Workers inside the payload canister watch the S1 Integrated Truss Structure as it is lowered toward them. The canister will transport the truss to Atlantis. The first starboard truss segment, the S1 will be attached to the Central truss segment, the S0 Truss, on the International Space Station during mission STS-112. Atlantis is scheduled to launch no earlier than Oct. 2. KSC-02pd1222

CAPE CANAVERAL, Fla. - At Launch Pad 39A at NASA's Kennedy Space Center in Florida, the payload canister, at left, is lifted from its transporter toward the payload changeout room in the rotating service structure. The canister carries a cargo of four carriers holding various equipment for the STS-125 mission aboard space shuttle Atlantis to service NASA’s Hubble Space Telescope. Atlantis is seen at right, atop the mobile launcher platform. The two tail service masts flank the engines in front of the wings. At the pad, the cargo will be moved into the Payload Changeout Room. The changeout room is the enclosed, environmentally controlled portion of the rotating service structure that supports cargo delivery to the pad and subsequent vertical installation into the shuttle’s payload bay. Launch of Atlantis is targeted for Oct. 10. Photo credit: NASA/Troy Cryder KSC-08pd2786

KENNEDY SPACE CENTER, FLA. -- Workers in the Space Station Processing Facility prepare the hatch of the Unity connecting module for closure before its launch aboard Space Shuttle Endeavour on STS-88 in December. Unity will now undergo a series of leak checks before a final purge of clean, dry air inside the module to ready it for initial operations in space. Other testing includes the common berthing mechanism to which other space station elements will dock and the Pad Demonstration Test to verify the compatibility of the module with the Space Shuttle as well as the ability of the astronauts to send and receive commands to Unity from the flight deck of the orbiter. The next time the hatch will be opened it will be by astronauts on orbit. Unity is expected to be ready for installation into the payload canister on Oct. 25, and transported to Launch Pad 39-A on Oct. 27. The Unity will be mated to the Russian-built Zarya control module which should already be in orbit at that time KSC-98pc1125

S127E009489 - STS-127 - Survey view of mast canister during Joint Operations.

CAPE CANAVERAL, Fla. – Inside the Vehicle Assembly Building at NASA’s Kennedy Space Center in Florida, United Space Alliance technicians use a crane to pick up the right side tail cone for buildup on space shuttle Endeavour. The tail cone protects space shuttle main engines during ferry flights on top of the Shuttle Carrier Aircraft, or SCA. The work is part of Transition and Retirement of the remaining space shuttles, Endeavour and Atlantis. Endeavour is being prepared for public display at the California Science Center in Los Angeles. Its ferry flight to California is targeted for mid-September. Endeavour was the last space shuttle added to NASA’s orbiter fleet. Over the course of its 19-year career, Endeavour spent 299 days in space during 25 missions. For more information, visit http://www.nasa.gov/shuttle. Photo credit: NASA/Kim Shiflett KSC-2012-2835

KENNEDY SPACE CENTER, FLA. -- Installed on a transporter, the payload canister moves out of the Vertical Processing Facility. Inside the canister are the SPACEHAB module and the port 5 truss segment for mission STS-116. They will be moved into the payload changeout room at the pad and transferred into Space Shuttle Discovery's payload bay once the vehicle has rolled out to the pad. The payload canister is 65 feet long, 18 feet wide and 18 feet, 7 inches high. It has the capability to carry vertically or horizontally processed payloads up to 15 feet in diameter and 60 feet long, matching the capacity of the orbiter payload bay. It can carry payloads weighing up to 65,000 pounds. Clamshell-shaped doors at the top of the canister operate like the orbiter payload bay doors, with the same allowable clearances. Photo credit: NASA/George Shelton KSC-06pd2451

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kennedy space center nasa kennedy space center space station sspf logistics module donatello logistics module donatello move payload canister payload canister checkout room elements flights iss partners iss partners jim grossmann high resolution astronauts early renaissance renaissance nasa florida cape canaveral