NASA's Nancy Grace Roman Space Telescope is scheduled to launch Sunday from Kennedy Space Center aboard a SpaceX Falcon Heavy rocket. The $4.3 billion observatory began as a surveillance satellite platform built by the National Reconnaissance Office for post-9/11 intelligence gathering, which was donated to NASA after the spy program was scrapped before launch.
NASA's Nancy Grace Roman Space Telescope is scheduled to launch from Kennedy Space Center on 30 August after completing vibration testing at Goddard Space Flight Center. The telescope's wide field of view and infrared sensitivity are expected to let it survey far more sky in far less time than the Hubble Space Telescope, dramatically expanding the catalog of known exoplanets.
NASA is set to launch the Nancy Grace Roman Space Telescope, a $4 billion observatory built to survey vast swaths of the cosmos with high speed and precision. The mission aims to capture wide-field images that reveal cosmic phenomena previously undetectable by existing instruments.
NASA hired startup Katalyst Space Technologies to launch an autonomous spacecraft called LINK to dock with the 21-year-old Swift observatory and push it into a stable orbit, mirroring Jared Isaacman's earlier scrapped plan to save the Hubble. The rushed, high-risk mission, assembled in record time after Isaacman became NASA administrator, ultimately fell apart before achieving its goal.
NASA's Nancy Grace Roman Space Telescope is scheduled to launch atop a SpaceX Falcon Heavy rocket from Kennedy Space Center no earlier than 7:26AM Eastern on August 30, with live coverage starting at 6:20AM. If weather or technical issues delay the flight, a backup attempt is planned for August 31 at 7:22AM Eastern. NASA will also host a science briefing and prelaunch news conference on August 29.
NASA plans to launch the Nancy Grace Roman Space Telescope as early as August 30 from Kennedy Space Center. The observatory matches Hubble's resolution but offers a field of view about 100 times larger, enabling it to map vast regions of sky to study dark matter and dark energy over a five-year primary mission. Scientists also expect it to detect as many as 200,000 new exoplanets, far surpassing the roughly 6,300 confirmed so far.