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  1. A United Launch Alliance (ULA) Atlas V rocket will launch Boeing’s Crew Space Transportation (CST)-100 Starliner spacecraft with two NASA astronauts, Barry “Butch” Wilmore and Sunita "Suni" Williams on the Crew Flight Test (CFT). Following separation from Atlas V, Starliner engines will burn taking it the rest of the way to orbit and on ...

  2. Aug 21, 2002 · Atlas V is a two-stage launch vehicle. The first stage is comprised of a Russian-built RD-180 engine which burns a combination of liquid oxygen and RP-1 (kerosene) fuel. The first stage can produce a liftoff thrust of 933,406 pounds. The first stage can be augmented by up to five Aerojet strap-on solid rocket boosters.

  3. Oct 4, 2021 · October 4, 2021. The Atlas family of rockets have been a mainstay of America’s space program since the dawn of the Space Age, when unused SM-65 Atlas intercontinental ballistic missiles (ICBMs ...

  4. Jan 1, 2021 · The solid-propellant Minuteman missile, introduced in 1963, made the Atlas obsolete, and all launch complexes were closed by 1966. About 350 Atlas missiles were built. At the end of their service life many Atlas D, E and F missiles were stored, refurbished, and used as space launch vehicles.

  5. Sep 16, 2016 · The Mercury-Redstone launch vehicle was the first crewed launch vehicle in the United States space program. The Mercury-Redstone provided NASA with an opportunity understand performance aspects of the Mercury spacecraft, the effect of a weightless environment on astronauts, and launch and recovery operations at Kennedy Space Center. Line ...

  6. www3.nasa.gov › specials › artemis-iNASA: Artemis I

    Artemis I. All eyes will be on the historic Launch Complex 39B when the Orion spacecraft and the Space Launch System (SLS) rocket lift off for the first time from NASA's modernized Kennedy Space Center in Florida. Artemis I will be the first in a series of increasingly complex missions to build a long-term human presence at the Moon for decades ...

  7. When the main engine is used, the two propellants combine and they burn to give Juno thrust. The main engine was used for large adjustments to the trajectory, like orbit insertion. Together, the propellants have a mass of just over 4,400 pounds (2,000 kilograms) at launch, accounting for 55 to 60 percent of the spacecraft’s mass.

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