Analysis of information sources in references of the Wikipedia article "Programa Artemis" in Portuguese language version.
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That solicitation, he said, is being informed by responses the agency received from an RFI it issued in early May. That RFI sought details from companies about their ability to deliver “instruments, experiments, or other payloads” through the next decade to support NASA’s science, exploration and technology development needs.
The rover, which was being designed for lunar missions in the early 2020s, was killed as NASA revealed plans to cultivate "commercial partners" for moon exploration.
...the prospector has not been optimized for science—but rather as a precursor for human exploration.
We now understand RP was cancelled on 23 April 2018 [...] The robotic rover was being built as the world's only vehicle aimed at exploring the polar region of the Moon [...] and the first ever US robotic rover on the surface of the Moon.
Draper announced Oct. 10 that the not-for-profit research and development company has submitted a proposal to NASA's Commercial Lunar Payload Services (CLPS) program for a small robotic lunar lander capable of carrying scientific payloads to the lunar surface. Proposals for the initial round of the CLPS program were due to NASA Oct. 9. [...] The organization noted that the “7” in Artemis-7 reflects that this will be Draper’s seventh lunar landing mission, after the six Apollo lunar landings.
Lockheed Martin, which is manufacturing the Orion spacecraft for NASA's deep space missions, plans to study whether some commercial payloads could fly along for the ride toward the Moon. [...] Lockheed has partnered with NanoRacks, a company that has helped to commercialize access to the International Space Station, to complete a privately funded study to determine the level of commercial interest in such an opportunity.
...Lockheed Martin’s concept for a reusable lunar lander [...] was presented today at the 69th annual International Astronautical Congress [...] In its initial configuration, the lander would have an impulse (delta-v) capacity of 5 km/s...
The lander design leverages many technologies from the Orion capsule, which Lockheed is building for NASA. [...] The lander would be refueled between missions — eventually, perhaps, with propellant derived from water ice extracted from the Moon or asteroids.
Orion's key systems were put to the test during the flight, which launched atop a United Launch Alliance Delta 4 Heavy rocket [...] the craft hit Earth's atmosphere as the capsule was flying through space at about 20,000 mph (32,000 km/h).
In the Ascent Abort-2 test, NASA will verify that the Orion spacecraft's launch abort system can steer the capsule and astronauts inside it to safety in the event of an issue with the Space Launch System rocket when the spacecraft is under the highest aerodynamic loads it will experience during ascent...
...the prospector has not been optimized for science—but rather as a precursor for human exploration.
Lockheed Martin, which is manufacturing the Orion spacecraft for NASA's deep space missions, plans to study whether some commercial payloads could fly along for the ride toward the Moon. [...] Lockheed has partnered with NanoRacks, a company that has helped to commercialize access to the International Space Station, to complete a privately funded study to determine the level of commercial interest in such an opportunity.
NASA's overall Resource Prospector work toward risk reduction activities to advance instrument developments, component technologies including rover components, and innovation mission operations concepts will help inform future missions...
The Orion Pad Abort-1 team has successfully tested the first U.S. designed abort system since Apollo," said Doug Cooke, NASA's associate administrator for the exploration systems directorate, at a post-flight briefing [...] The PA1 test was conducted under NASA's Constellation program, which a former NASA administrator described as "Apollo on steroids.
The rover, which was being designed for lunar missions in the early 2020s, was killed as NASA revealed plans to cultivate "commercial partners" for moon exploration.
In April 2019, Orion is scheduled to undergo a full-stress test of the LAS, called Ascent Abort Test 2 (AA-2), where a booster provided by Orbital ATK will launch from Cape Canaveral Air Force Station in Florida, carrying a fully functional LAS and a 22,000-pound Orion test vehicle...
NASA’s new Commercial Lunar Payload Services (CLPS) effort to award contracts to provide capabilities as soon as 2019.
This will be the second and final planned LAS test following the Pad Abort-1 (PA-1) development test conducted in 2010 as a part of the ccanceled [sic] Constellation Program and the abort system design changed from PA-1 to AA-2 both inside and outside [...] in preparation for a scheduled daybreak test on July 2.
Orbital Sciences Corporation (NYSE:ORB) today announced that it has been selected [...] to design and build the next-generation NASA Orion Abort Test Booster (ATB).
Under the NASA plan, a mission to land on the moon would take place during the third launch of the Space Launch System. Astronauts, including the first woman to walk on the moon, Mr. Bridenstine said, would first stop at the orbiting lunar outpost. They would then take a lander to the surface near its south pole, where frozen water exists within the craters.a-moon-mars.html
We now understand RP was cancelled on 23 April 2018 [...] The robotic rover was being built as the world's only vehicle aimed at exploring the polar region of the Moon [...] and the first ever US robotic rover on the surface of the Moon.
In the Ascent Abort-2 test, NASA will verify that the Orion spacecraft's launch abort system can steer the capsule and astronauts inside it to safety in the event of an issue with the Space Launch System rocket when the spacecraft is under the highest aerodynamic loads it will experience during ascent...
NASA's Orion spacecraft returned safely to Earth this morning following a picture-perfect test mission. [...] Orion itself was originally part of NASA's now-defunct Constellation program, and is now a key component of the space agency's Mars plans.
The lander design leverages many technologies from the Orion capsule, which Lockheed is building for NASA. [...] The lander would be refueled between missions — eventually, perhaps, with propellant derived from water ice extracted from the Moon or asteroids.
Called Pad Abort-1, the $220 million Orion escape system test showcased the system that could be used to rescue a crew and its spacecraft in case of emergencies at the launch pad.
Orion's key systems were put to the test during the flight, which launched atop a United Launch Alliance Delta 4 Heavy rocket [...] the craft hit Earth's atmosphere as the capsule was flying through space at about 20,000 mph (32,000 km/h).
The first orbital test flight of NASA’s Orion crew capsule will lift off on top of a United Launch Alliance Delta 4 rocket from Cape Canaveral]s Complex 37B launch pad. The rocket will send the unmanned crew module 3,600 miles above Earth...
That solicitation, he said, is being informed by responses the agency received from an RFI it issued in early May. That RFI sought details from companies about their ability to deliver “instruments, experiments, or other payloads” through the next decade to support NASA’s science, exploration and technology development needs.
...selected but unspecified instruments from RP will instead be flown on future commercial lunar lander missions under a new Commercial Lunar Payload Services (CLPS) program. NASA released a draft request for proposals for that program April 27. [...] Under CLPS, NASA plans to issue multiple indefinite-delivery indefinite-quantity (IDIQ) contracts to companies capable of delivering payloads to the lunar surface. Companies would have to demonstrate their ability to land at least 10 kilograms of payload on the lunar surface by the end of 2021.
NASA also will look for payloads for the miniature landers in addition to landers capable of delivering 500 to 1,000 kilograms to the surface of the Moon.
Draper announced Oct. 10 that the not-for-profit research and development company has submitted a proposal to NASA's Commercial Lunar Payload Services (CLPS) program for a small robotic lunar lander capable of carrying scientific payloads to the lunar surface. Proposals for the initial round of the CLPS program were due to NASA Oct. 9. [...] The organization noted that the “7” in Artemis-7 reflects that this will be Draper’s seventh lunar landing mission, after the six Apollo lunar landings.
...some of the instruments that were designed for the mission could be used in commercially funded efforts.
The launch at 12.05pm GMT aboard a Delta IV heavy rocket from Cape Canaveral, Florida, was as free of problems as Thursday's aborted attempt was full of them. Immediately, Nasa tweeted "Liftoff! #Orion's flight test launches a critical step on our #JourneytoMars".
...Lockheed Martin’s concept for a reusable lunar lander [...] was presented today at the 69th annual International Astronautical Congress [...] In its initial configuration, the lander would have an impulse (delta-v) capacity of 5 km/s...
The Orion Pad Abort-1 team has successfully tested the first U.S. designed abort system since Apollo," said Doug Cooke, NASA's associate administrator for the exploration systems directorate, at a post-flight briefing [...] The PA1 test was conducted under NASA's Constellation program, which a former NASA administrator described as "Apollo on steroids.
This will be the second and final planned LAS test following the Pad Abort-1 (PA-1) development test conducted in 2010 as a part of the ccanceled [sic] Constellation Program and the abort system design changed from PA-1 to AA-2 both inside and outside [...] in preparation for a scheduled daybreak test on July 2.
Called Pad Abort-1, the $220 million Orion escape system test showcased the system that could be used to rescue a crew and its spacecraft in case of emergencies at the launch pad.
NASA's Orion spacecraft returned safely to Earth this morning following a picture-perfect test mission. [...] Orion itself was originally part of NASA's now-defunct Constellation program, and is now a key component of the space agency's Mars plans.
The launch at 12.05pm GMT aboard a Delta IV heavy rocket from Cape Canaveral, Florida, was as free of problems as Thursday's aborted attempt was full of them. Immediately, Nasa tweeted "Liftoff! #Orion's flight test launches a critical step on our #JourneytoMars".
In April 2019, Orion is scheduled to undergo a full-stress test of the LAS, called Ascent Abort Test 2 (AA-2), where a booster provided by Orbital ATK will launch from Cape Canaveral Air Force Station in Florida, carrying a fully functional LAS and a 22,000-pound Orion test vehicle...
Orbital Sciences Corporation (NYSE:ORB) today announced that it has been selected [...] to design and build the next-generation NASA Orion Abort Test Booster (ATB).
Under the NASA plan, a mission to land on the moon would take place during the third launch of the Space Launch System. Astronauts, including the first woman to walk on the moon, Mr. Bridenstine said, would first stop at the orbiting lunar outpost. They would then take a lander to the surface near its south pole, where frozen water exists within the craters.a-moon-mars.html
NASA’s new Commercial Lunar Payload Services (CLPS) effort to award contracts to provide capabilities as soon as 2019.
...selected but unspecified instruments from RP will instead be flown on future commercial lunar lander missions under a new Commercial Lunar Payload Services (CLPS) program. NASA released a draft request for proposals for that program April 27. [...] Under CLPS, NASA plans to issue multiple indefinite-delivery indefinite-quantity (IDIQ) contracts to companies capable of delivering payloads to the lunar surface. Companies would have to demonstrate their ability to land at least 10 kilograms of payload on the lunar surface by the end of 2021.
NASA also will look for payloads for the miniature landers in addition to landers capable of delivering 500 to 1,000 kilograms to the surface of the Moon.
NASA's overall Resource Prospector work toward risk reduction activities to advance instrument developments, component technologies including rover components, and innovation mission operations concepts will help inform future missions...
...some of the instruments that were designed for the mission could be used in commercially funded efforts.
The first orbital test flight of NASA’s Orion crew capsule will lift off on top of a United Launch Alliance Delta 4 rocket from Cape Canaveral]s Complex 37B launch pad. The rocket will send the unmanned crew module 3,600 miles above Earth...