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NASA awards launch contract for Roman Space Telescope
by Staff Writers
Washington DC (SPX) Jul 20, 2022

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NASA has awarded a NASA Launch Services (NLS) II contract to Space Exploration Technologies Corporation (SpaceX) in Hawthorne, California, to provide launch service for the Nancy Grace Roman Space Telescope mission. The Roman Space Telescope is the top-priority large space mission recommended by the 2010 Astronomy and Astrophysics Decadal Survey.

NLS II is an indefinite-delivery/indefinite-quantity contract. The total cost for NASA to launch the Roman telescope is approximately $255 million, which includes the launch service and other mission related costs. The telescope's mission currently is targeted to launch in October 2026, as specified in the contract, on a Falcon Heavy rocket from Launch Complex 39A at NASA's Kennedy Space Center in Florida.

The telescope's science program will include dedicated investigations to tackle outstanding questions in cosmology, including the effects of dark energy and dark matter, and exoplanet exploration. Roman also includes a substantial general investigator program to enable further studies of astrophysical phenomena to advance other science goals.

The telescope was previously known as the Wide Field InfraRed Survey Telescope (WFIRST), but it was later renamed in honor of Dr. Nancy Grace Roman for her extraordinary work at NASA, which paved the way for large space telescopes.

NASA's Launch Services Program at Kennedy is responsible for launch vehicle program management of the SpaceX launch service. The Roman Space Telescope project is managed by NASA's Goddard Space Flight Center in Greenbelt, Maryland.


Related Links
Roman Space Telescope
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Cyborg collaboration finds 40,000 ring galaxies
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Human and machine intelligence worked together to find 40,000 ring galaxies, scientists at the National Astronomy Meeting will announce this week. Dr Mike Walmsley of the University of Manchester and the Galaxy Zoo collaboration will present the new work, describing how this "cyborg" approach measured the shapes of millions of galaxies. Galaxies live a chaotic life. Collisions with other galaxies and bursts of energy from supermassive black holes disrupt the colours and orbits of billions of stars ... read more

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