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Today, we introduced the eighteen NASA Astronauts forming the Artemis team. Together, they’ll use their diverse range of backgrounds, expertise, and experience to pave the way for humans to return to the Moon, to stay.
Meet the heroes of the future who’ll carry us back to the Moon and beyond - the Artemis generation.
Fun fact: Joe is a veteran of the U.S. Peace Corps! Get to know Joe personally with this video –> Watch HERE.
Fun fact: Kayla got her start in public service through serving in the U.S. Navy. Get to know Kayla personally with this video –> Watch HERE.
Fun fact: Raja’s nickname is “Grinder,” and he comes from a test pilot background. Get to know Raja personally with this video –> Watch HERE.
Fun fact: Jessica is a rugby national champion winner and geologist. Get to know Jessica personally with this video –> Watch HERE.
Fun fact: Matthew sums himself up as a father, a husband and an explorer. Get to know Matthew personally with this video –> Watch HERE.
Fun fact: Jasmin says she still wakes up every morning and it feels like a “pinch me moment” to think she’s actually an astronaut right now. Get to know Jasmin personally with this video –> Watch HERE.
Fun fact: Victor’s dream is to work on the surface of the Moon. Get to know Victor personally with this video –> Watch HERE.
Fun fact: Jessica was five years old when she knew she wanted to be an astronaut. Get to know Jessica personally with this video –> Watch HERE.
Fun fact: Woody used to spend summers away from graduate school working search and rescue in Yosemite National Park. Get to know Woody personally with this video –> Watch HERE.
Fun fact: Anne is a West Point alumni who describes herself as an impractical dreamer. Get to know Anne personally with this video –> Watch HERE.
Fun fact: Jonny is also a U.S. Navy SEAL with a medical degree from Harvard. Get to know Jonny personally with this video –> Watch HERE.
Fun fact: Nicole is a U.S. Lieutenant Colonel in the Marine Corps! Get to know Nicole personally with this video –> Watch HERE.
Fun fact: Kjell was a flight surgeon, a physician who takes care of astronauts, before applying to be an astronaut himself! Get to know Kjell personally with this video –> Watch HERE.
Fun fact: Christina set a record for the longest single spaceflight by a woman with a total of 328 days in space. Get to know Christina personally with this video –> Watch HERE.
Fun fact: Frank was a Black Hawk helicopter pilot in the U.S. Army and family medical physician. Get to know Frank personally with this video –> Watch HERE.
Fun fact: Stephanie was the voice in Mission Control leading our NASA Astronauts for the all-woman spacewalk last year. Get to know Stephanie personally with this video –> Watch HERE.
Fun fact: Scott said he wanted to be an astronaut in a high school class and the students laughed – look at him now. Get to know Scott personally with this video –> Watch HERE.
Fun fact: Kate is actually IN space right now, so she will have to get her official portrait when she comes home! She is also the first person to sequence DNA in space. Get to know Kate personally with this video –> Watch HERE. Stay up to date with our Artemis program and return to the Moon by following NASA Artemis on Twitter, Facebook and Instagram.
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.
Soichi Noguchi was selected as an astronaut with the Japan Aerospace Exploration Agency in 1996. A native of Yokohama, Kanagawa, he is currently a mission specialist for NASA’s SpaceX Crew-1 launch taking flight to the International Space Station on Nov. 14. Soichi will be the first international crewmember on Crew Dragon and the first international partner astronaut to fly aboard three types of orbital spacecraft – the U.S. space shuttle, the Russian Soyuz, and now the SpaceX Crew Dragon! Talk about impressive. He received a B.S. in Aeronautical Engineering in 1989, master’s degree in Aeronautical Engineering in 1991, Doctor of Philosophy in Advanced Interdisciplinary Studies in 2020, all from the University of Tokyo.
Soichi took time from preparing for his historic mission to answer questions about his life and career:
After my second flight, I started this research about your sensory system in zero gravity. I used a my own personal video, which I took during my last two flights at the International Space Station. I had a lot of interesting discussions amongst young professionals and students at the University of Tokyo about the research. It was a fun experience – but I would not do it again!
Space IS definitely a risky business. But the reward is higher than the risk so that’s why we take it.
Three words: Space. Is. Waiting.
We have a lot of interesting missions to do, but my personal goal is to return home with lots of fun stories.
It was 25 years ago, but I still remember the voice vividly. I got a call from Dr. Mamoru Mohri, the very first JAXA astronaut, and he said “Welcome to the Astronaut Corps.” When I got the call to be part of the Crew-1 mission, I was a lot less nervous than when I was assigned to my first mission, but the excitement remains the same.
He is a natural leader that takes care of the team really well, and he’s fun to play around with.
Star Wars… just because!
My favorite photo is Mount Fuji because I see the mountain almost every day when I was a child. It’s definitely breathtaking to see Mount Fuji from space.
I have lots of family photos, and I would put it inside my sleep station. Definitely one of the most challenging things about spaceflight is not experiencing zero gravity, not the rocket, but time away from family.
It’s an excursion. The view of the Earth is just breathtaking because you are just one glass away from the vacuum of space. There’s nothing between you and Earth.
I would say I’m most excited for interplanetary travel to become more common so that the school kids can go to Mars on their field trip.
Don’t worry, be happy!
This is definitely an exciting moment. We’re starting to see more players in the game. SpaceX is the frontrunner, but soon we’ll see Boeing, Sierra Nevada and Axiom. So the International Space Station will soon have more players involved, and it will be a lot more fun!
Thank you for your time, Soichi, and good luck on your historic mission! Get to know a bit more about Soichi and his NASA astronaut crew mates Victor Glover, Michael Hopkins, and Shannon Walker in the video above.
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#we are going
Today, we revealed the four astronauts who will fly around the Moon during the Artemis II mission, scheduled to launch in 2024. Get to know them:
Meet the first member of our Artemis II crew: mission specialist Christina Koch. Koch visited the International Space Station in 2019, where she participated in the first all-woman spacewalk with Jessica Meir. She began her NASA career as an electrical engineer at Goddard Space Flight Center.
Representing the Canadian Space Agency is Jeremy Hansen from London, Ontario. Col. Hansen was a fighter pilot with Canadian Armed Forces before joining the Canadian Space Agency, and currently works with NASA on astronaut training and mission operations. This will be Col. Hansen’s first mission in space.
Victor Glover is our Artemis II pilot. Glover is part of our 2013 class of NASA astronauts and was the pilot for NASA’s SpaceX Crew-1 mission. He’s logged 3,000 flight hours in more than 40 different aircraft.
...and rounding out our Artemis II crew: mission commander Reid Wiseman. Wiseman lived and worked aboard the International Space Station as a flight engineer in 2014. He also commanded the undersea research mission NEEMO21, and most recently served as Chief of the NASA astronauts.
Make sure to follow us on Tumblr for your regular dose of space!
A pod of curious dolphins added extra meaning and porpoise to the recovery of Crew-9′s SpaceX Dragon capsule and its four explorers shortly after splashdown. Inside the capsule were astronauts Nick Hague, Suni Williams, Butch Wilmore, and cosmonaut Aleksandr Gorbunov, who splashed down off the coast of Florida at 5:57pm ET (2127 UTC) on March 18, 2025, concluding their scientific mission to the International Space Station. See Crew-9 return from deorbit to splashdown in this video. (The dolphins appear at 1:33:56.)
Chances are, if you have ever spent time in a school or office building, you have experienced a fire drill. Well, astronauts practice emergency drills, too!
Since we began sending astronauts to space, we have used systems and drills to practice moving people safely away from the launch pad in the unlikely event of an emergency during the countdown to launch.
Early Mercury and Gemini programs in the 1960s used a launch escape system in the form of a solid rocket motor that could pull the astronauts to safety in the event of an emergency. However, this system only accounted for the astronauts, and not other personnel at the launch pad. NASA’s emergency systems have since improved substantially to include everyone.
Artemis II will be NASA’s first mission with crew aboard the SLS (Space Launch System) rocket and Orion spacecraft. Artemis II will fly around the Moon and come back to Earth. Beginning with the Artemis II mission, we will use a track cable to connect the mobile launcher — the ground structure that supports the rocket before and during launch — to the perimeter of the launch pad. Picture a gondola ski lift beginning at the top of the rocket and ending all the way down to the ground. In case of an emergency, astronauts and support crews move from the capsule into the crew access arm, climb into one of four baskets waiting for them, and ride down to the ground.
There, members of the Pad Rescue team are ready to scoop the astronauts up and whisk them to safety. Think of the Pad Rescue team as spaceflight knights in shining armor. Except instead of saving crew from a fire breathing dragon, they are whisking the astronauts away from a fully loaded skyscraper-sized rocket that’s getting ready to lift off.
The Artemis II mission will also introduce several new ground systems for the first time – including the new and improved braking system similar to what roller coasters use! Though no NASA mission to date has needed to use its ground-based emergency system during launch countdown, those safety measures are still in place and maintained as a top priority.
So the next time you practice a fire drill at school or at work, remember that these emergency procedures are important for everyone to stay safe — even astronauts.
Make sure to follow us on Tumblr for your regular dose of space!
Hosted a “Story Time From Space” event today at Kate’s camp. The kids learned about the ISS and all of the exciting experiments taking place up there. They also made artwork for the Space for Art Foundation’s BEYOND project. @issnationallab @spaceforartfoundation @iss #iss #space #issnationallab #astronauts #spacestation #science #stem @nasa #nasa https://www.instagram.com/p/CDCKwFKnIG3/?igshid=116ibjl2qrlwa
Woah :o
So, basically, like the Mission Space ride at Epcot (that one is my favoriteeeee)?
WANT MORE? GET YOUR HEAD STUCK IN THE STARS AT MY BLOG!
Testing and Training on the Boeing Starliner : NASA astronaut Mike Fincke works through a check list inside a mockup of Boeing’s CST-100 Starliner during a simulation at NASA’s Johnson Space Center on Aug. 21, 2019. (via NASA)
Victoria LaBarre was climbing out of a canyon and into a bright, vast, seemingly lifeless landscape when she started to experience an astronaut’s nightmare.
“Suddenly,” she said, “I couldn’t breathe.”
The symptoms were real — maybe from claustrophobia, or from exertion at high altitude. But LaBarre didn’t unlatch her helmet to get a breath of fresh air because, in this simulated Mars exercise in the Utah desert, she was supposed to be an astronaut. The canyon was standing in for Candor Chasma, a 5-mile-deep gash in the Red Planet’s surface. On Mars, there’s no oxygen in the air — you do not take off your helmet.
So, instead, LaBarre radioed for help from fellow members of Crew 177. The team of students and teachers from a Texas community college had applied together to live and work for a week this spring in a two-story metal cylinder at the privately run Mars Desert Research Station near Hanksville, Utah.
Elijah Espinoza, a freshman assigned to be a crew engineer and geologist for the week, heard LaBarre’s call and walked her through some breathing exercises.
“I think that’s really one of the best things about Mars — the teamwork,” said LaBarre.“I don’t think you could live without it.”
Photos: Rae Ellen Bichell/NPR
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It’s 1969 and Apollo 11 astronauts Buzz Aldrin and Neil Armstrong are the first humans to land on the Moon. In now iconic footage, Aldrin and Armstrong carefully assemble and maneuver an American flag to place on the lunar surface. The fabric unfurls, staying suspended without any wind to animate the stars and stripes. The flagpole sways precariously as the crew work to anchor it in the Moon’s low gravity at just 1/6th that of Earth’s. How did this moment come about? On Flag Day, let’s dive behind-the-scenes of what led to getting the American flag on the Moon 50 years ago.
Image: Astronaut Buzz Aldrin poses for a photograph beside the deployed United States flag during the Apollo 11 mission.
Seeking to empower the nation, President John F. Kennedy gave us a grand charge. The human spaceflight program of the early 1960s was challenged to work on missions that sent humans to the surface of another world. Following President Kennedy’s death in 1963, President Richard Nixon stressed a more international perspective to the Apollo missions. To reconcile the need for global diplomacy with national interests, we appointed the Committee on Symbolic Activities for the First Lunar Landing.
Image: NASA Administrator Thomas Paine and President Richard Nixon are seen aboard the USS Hornet, Apollo 11’s splashdown recovery vessel.
The committee, and the U.S. at large, wanted to avoid violating the United Nations Outer Space Treaty, which prohibited any nation from taking possession of a celestial body. After some debate, they recommended that the flag only appear during the Apollo 11 spacewalk. A plaque would accompany it, explaining that the flag was meant to stand for peaceful exploration, not conquest.
Image: The plaque reads “Here men from the planet Earth first set foot upon the Moon July 1969 A.D. We came in peace for all of mankind.” Under the text are signatures by President Nixon, Buzz Aldrin, Neil Armstrong, and Michael Collins.
A team of engineers at Johnson Space Center had three months to resolve several issues regarding the flag’s assembly. First, was the Moon’s lack of atmosphere. The flag, quite literally, could not fly the way it does on Earth. To address this, a horizontal crossbar was added to support the flag’s weight and give the illusion of it waving.
Image: NASA technician David L. McCraw shows the flag next to a Lunar Module mockup.
Second was the flag’s assembly, which had to be as lightweight and compact as possible so as not to take up limited storage space. The completed package, which was attached to Lunar Module’s ladder, weighed just under ten pounds. It received an outer case made of steel, aluminum, and Thermoflex insulation and blanketing to shield the flag from the 2,000 degree Fahrenheit spike from the Eagle’s descent engine.
Image: Component pieces of the flag assembly.
The last issue was mobility. Bulky spacesuits significantly restricted the astronauts’ range of motion, and suit pressurization limited how much force they could apply. To accommodate these limits, the team included telescoping components to minimize the need to reach and maneuver the poles. A red painted ring on the flagpole indicated how far into the ground it should be driven. Hinges and catches would lock into place once the pieces were fully extended.
Image: Diagram from the 1969 Apollo 11 press release illustrating astronaut spacesuit reach capabilities and ideal working height.
Fifty years after Apollo 11, the flag we planted on the lunar surface has likely faded but its presence looms large in United States history as a symbol of American progress and innovation.
Image: A close-up view of the U.S. flag deployed on the Moon at the Taurus-by the crew of Apollo 17, the most recent lunar landing mission.
The story doesn’t stop here. Anne Platoff’s article “Where No Flag Has Gone Before” sheds more light on the context and technical process of putting the United States flag on the Moon. You can also check out Johnson Space Center’s recent feature story that details its presence in later missions. Happy Flag Day! Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.
These astronauts are ready! . . . . #Hellospaceship #tshirt #tee #tshirts #friday #astronaut #cooltshirt #astronauts #silver #screenprint #silkscreen
SpaceX has plans to send two private citizens around the Moon, CEO Elon Musk announced today.
It will be a private mission with two paying customers, not NASA astronauts, who approached the company. The passengers are “very serious” about the trip and have already paid a “significant deposit,” according to Musk. The trip around the Moon would take approximately one week: it would skim the surface of the Moon, go further out into deep space, and loop back to Earth — approximately 300,000 to 400,000 miles.
The plan is to do the trip in the second quarter of 2018 on the Crew Dragon spacecraft with the Falcon Heavy rocket, which is due to do its maiden launch this summer. Of course, Musk is well-known for his unrealistic deadlines — in 2011, he promised to put people in space in just three years.
The two people going on the trip, who weren’t named, already know each other. They will begin initial training for the trip later this year. Musk declined to comment on the exact cost of the trip, but said it was “comparable” or a little more than the cost of a crewed mission to the International Space Station. For context, one ticket on the Russian Soyuz rocket costs NASA around $80 million.
Continue Reading.
SPACEWALK LIVE! http://www.ustream.tv/nasahdtv Edit/update: I was mistaken, Shane is preforming the EVA and not Peggy. As of 9:50amCT the astronauts are over 1.5hrs ahead of schedule and now performing extra tasks to get ahead. I am out of mission control now. They completed installing new Lithium Ion batteries.
Twenty five weeks at NASA Johnson I finally got a proper tour, lead by a tour guide, of the Space Vehicle Mockup Facility that houses exact replicas (build with same blueprint) of International Space Station modules, Shuttle, and Soyuz. Astronauts train in these mockups. A "low definition" mockup of Orion was present too.
Neurosciences Laboratory took us on a tour of their various astronaut barf machines. It is really like the rumors of spinning chairs, dizzying treadmills, and dark enclosed sliding contraptions. The spinning is to isolate parts of your brain that are used for balance. Only one day after Space Station astronauts return to Earth in Russia they are flown over to Johnson Space Center and put through a series of gravity adaptation tests. They had to pick up weighted objects, navigate around obstacles, jump of a short platform, and exit a hatch like structure. These tests will help NASA determine if astronauts would be capable of completing Mars surface operations after a long low gravity flight to the Red Planet. I wouldn't be surprised if returning astronauts Kjell, Oleg and Kimiya are on their way to the barf lab right now!
Most of the NASA Johnson Co-Ops and Interns complete their Fall semester this week. It is absolutely heart breaking to get to know so many space passionate people only to have to say goodbye at the end of the semester. I wish I could see all of these stellar students participate in NASA's future as they have already contributed to the growth of space exploration. It was an honor to work among these bright minds.
WAYS TO GET INVOLVED
Accomplishments this week at NASA: https://youtu.be/4tw5uwHD0PEApply for a NASA Internship NOW (high school to grad school):https://intern.nasa.gov/ossi/web/public/main/Apply for a NASA Co-Op (Pathways Internship):http://nasajobs.nasa.gov/studentopps/employment/opportunities.htmLearn to code: https://hourofcode.com/usMeteor Shower live chat December 13th: https://www.nasa.gov/centers/marshall/news/news/releases/2015/M15-180.htmlCurrent NASA opportunities for students: http://www.nasa.gov/audience/forstudents/current-opps-index.htmlCode more: https://www.madewithcode.com/
SPACE WALK 7:10am CT tomorrow October 28 on NASA TV UStream: https://t.co/VMWu4QWWf7 Astronaut Kjell & Scott Kelly will be floating outside the International Space Station (ISS) doing stuff. Probably fixing things because poor ISS is almost 15 years old. If you think about how old a dog is when it's 15 that's basically like ISS. Photo by NASA
A scene from the New York stock exchange center was what I expected from Mission Control. Imagining the flight director with a thick cigar and eyebrows raised, flight controllers sitting console arguing about an experiment or device gone haywire and astronauts happily floating and Tweeting hearing only commands from Cap-Com that got through. My expectation was fortunately far from the truth.
Mission Control is calm, controlled and direct. The flight director welcomes the console leads, PLUTO, Ops Plan, RIO, ROBO, ISO and so on. Each flight controller checks in with a status and their goals to accomplish. Astronauts join in every morning for a daily operations meeting asking questions about upcoming experiments and big ticket events. Cap-Com is the only position in Mission Control that speaks with the astronauts so other flight controllers let Cap-Com know what needs to be relayed to astronauts. While sitting console with PLUTO I could listen to all the audio loops, Russian translation loop, JAXA, ESA, each console, and other NASA centers.
HOW TO GET INVOLVED:
*Tour the Mission Control Center through Space Center Houston
*Apply for a Pathways Internship (Co-Op) NOW ONLY OPEN SEP 14-18 for Johnson Space Center
*Apply for an internship at one of the many NASA centers.
*Follow NASA on Tumblr
Excitement is unavoidable after experiencing a week like this. Attending an exclusive unveiling of TIME's new Documentary Series 'A Year in Space', creating a display for a water distiller on board a space habitat, meeting Astronaut Clayton Anderson, touring the Space Vehicle Mockup Facility, and listening to Ginger Kerrick speak about her journey through NASA. Where do I start?
A Year In Space
"We must test the only hardware we didn't design, the human body". Jeffrey Kluger, Author of Apollo 13, reflects on the importance of Scott Kelly's year long mission in space. Two summers ago during my internship at NASA Glenn I was frustrated with how slowly our journey to Mars was taking. Even co-workers and fellow interns were perturbed by what seemed to be minimal progress. What I didn't understand at the time is that there are many variables to test, that are currently being tested, before we can ethically send a human to Mars. Scott Kelly's mission is one of those trial runs to learn about the effects of long duration space flight. During the unveiling we watched the first to episodes of 'A Year in Space', produced by Jonathan Woods, which captures Scott Kelly's professional and personal trials and tribulations while preparing for the mission. The first two episodes were cinematically spectacular and emotionally captivating. You can watch them here:
http://time.com/space-nasa-scott-kelly-mission/
Distiller Interface
Resources are extremely precious, especially if you are 250 miles or further (distance of the ISS) away from spaceship Earth. Among the human essentials for life absent in the big black vacuum of space is water. According to NASA's Consolidated Launch Schedule approximately 420 kg of water (887 bottles of water) has been transported to the International Space Station (ISS). This may seem like a lot of water however it is used for consumption, washing, experimenting, cooking, and many more activites. ISS has a highly efficient distiller system which takes the waste water and separates un-salvageable waste from reusable drinking water. This week I created a display so the crew members to monitor the water distiller's functionality. By programming visuals that illustrate the direction the liquids are flowing, visually displaying liquid levels with dynamic images of tanks filling and emptying, indicating the pressure, temperature, and amount of liquid flowing through the system crew members can keep track of the vitality of their distiller system.
Astronaut Clayton Anderson
Tenacity is a key ingredient in becoming an astronaut. One of the things Astronaut Anderson is known for applying to become an astronaut candidate 15 times before being accepted into the program. I was honored to meet Astronaut Anderson at his book signing for "The Ordinary Spaceman" telling his journey as a NASA intern-employee turned astronaut. He has spent 167 days living and working on the ISS. Check out his work: http://astroclay.com/ "Astro Clay" is also very active on Twitter and fun to follow: @Astro_Clay
Space Vehicle Mockup Facility Tour
Although these are referred to as "Mockups" in reality they are exact replicas of the vehicles in space right now so astronauts can accurately simulate missions. My mentor gave us interns a ground tour of the facility. We were able to explore inside the shuttle replica, visit Soyuz spacecraft and look inside the latest Orion mockup where they are currently positioning the displays to the correct eyesight for crew members. Visitiors to Johnson Space Center (JSC) can also tour the Mockup Facility also known as the astronaut training facility. If you are ever in Houston stop by Space Center Houston and you can take a tram tour which takes you around JSC and into a walkway overlooking the mockups: http://spacecenter.org/
Ginger Kerrick
Interns and Co-Ops (Pathways Interns) had the gracious opportunity to attend a lecture by Ginger Kerrick. As a young girl Kerrick dreamed to become an astronaut. From childhood dream to intern to Co-Op to employee to astronaut candidate to astronaut assistant to Capcom to Flight Director to essentially the head of ISS to... *catching breath* - Ginger Kerrick is amazing. Hear her story on Women@NASA: http://women.nasa.gov/ginger-kerrick/
It has been an amazing week with sadly only five more to come. I wish you all could have this experience and I encourage you if you are interested in an aerospace or space related career to intern at NASA: https://intern.nasa.gov/ossi/web/public/main/ All photos were taken by myself or fellow interns of me.
⭐⭐ This image can be purchased on deviantart.com It will come without a watermark and will be full size. Thanks for checking out my Ai assisted work, I hope you enjoy it. I also do oil painting and digital drawing ⭐⭐
https://www.deviantart.com/secondspast12/art/Connecting-now-1045110997
⭐⭐ This image can be purchased on deviantart.com It will come without a watermark and will be full size. Thanks for checking out my Ai assisted work, I hope you enjoy it. I also do oil painting and digital drawing ⭐⭐
https://www.deviantart.com/secondspast12/art/Proto-Alpha-VG789-21-Recon-1-1045111449
⭐⭐ This image can be purchased on deviantart.com It will come without a watermark and will be full size. Thanks for checking out my Ai assisted work, I hope you enjoy it. I also do oil painting and digital drawing ⭐⭐
https://www.deviantart.com/secondspast12/gallery
⭐⭐ This image can be purchased on deviantart.com It will come without a watermark and will be full size. Thanks for checking out my Ai assisted work, I hope you enjoy it. I also do oil painting and digital drawing ⭐⭐
https://www.deviantart.com/secondspast12/gallery
⭐⭐ This image can be purchased on deviantart.com It will come without a watermark and will be full size. Thanks for checking out my Ai assisted work, I hope you enjoy it. I also do oil painting and digital drawing ⭐⭐
https://www.deviantart.com/secondspast12/gallery
Chances are, if you have ever spent time in a school or office building, you have experienced a fire drill. Well, astronauts practice emergency drills, too!
Since we began sending astronauts to space, we have used systems and drills to practice moving people safely away from the launch pad in the unlikely event of an emergency during the countdown to launch.
Early Mercury and Gemini programs in the 1960s used a launch escape system in the form of a solid rocket motor that could pull the astronauts to safety in the event of an emergency. However, this system only accounted for the astronauts, and not other personnel at the launch pad. NASA’s emergency systems have since improved substantially to include everyone.
Artemis II will be NASA’s first mission with crew aboard the SLS (Space Launch System) rocket and Orion spacecraft. Artemis II will fly around the Moon and come back to Earth. Beginning with the Artemis II mission, we will use a track cable to connect the mobile launcher — the ground structure that supports the rocket before and during launch — to the perimeter of the launch pad. Picture a gondola ski lift beginning at the top of the rocket and ending all the way down to the ground. In case of an emergency, astronauts and support crews move from the capsule into the crew access arm, climb into one of four baskets waiting for them, and ride down to the ground.
There, members of the Pad Rescue team are ready to scoop the astronauts up and whisk them to safety. Think of the Pad Rescue team as spaceflight knights in shining armor. Except instead of saving crew from a fire breathing dragon, they are whisking the astronauts away from a fully loaded skyscraper-sized rocket that’s getting ready to lift off.
The Artemis II mission will also introduce several new ground systems for the first time – including the new and improved braking system similar to what roller coasters use! Though no NASA mission to date has needed to use its ground-based emergency system during launch countdown, those safety measures are still in place and maintained as a top priority.
So the next time you practice a fire drill at school or at work, remember that these emergency procedures are important for everyone to stay safe — even astronauts.
Make sure to follow us on Tumblr for your regular dose of space!
NASA astronaut Nick Hague will be taking your questions in an Answer Time session on Wednesday, January 15 from 12pm - 1pm ET here on NASA’s Tumblr! Find out what it’s like to live and work 254 miles above our planet’s surface. Make sure to ask your question now by visiting http://nasa.tumblr.com/ask!
Nick Hague was selected as one of eight members of the 21st NASA Astronaut class in 2013. Hague was the first astronaut from his class to be assigned to a mission which launched on October 11, 2018. Unfortunately, he and his crewmate Alexey Ovchinin, of the Russian space agency Roscosmos, were forced to abort the mission when a rocket booster experienced a malfunction shortly after the launch of their Soyuz MS-10. The aborted spacecraft landed safely.
His first flight to the International Space Station was from March 2019 through October 2019 as a a part of the Expeditions 59 and 60 crew. Together, the crew conducted hundreds of experiments, including investigations into devices that mimic the structure and function of human organs, free-flying robots and an instrument to measure Earth’s distribution of carbon dioxide. While at the International Space Station, Hague conducted three spacewalks, totaling 19 hours and 56 minutes with a total of 203 days in space.
Hague was awarded the Order of Courage from the Russian Federation for his actions during the Expedition 57/58 launch abort.
Hague was selected for the Air Force Fellows program where he was assigned as a member of the personal staff in the U.S. Senate, advising on matters of national defense and foreign policy.
He was a top flight test engineer in the U.S. Air Force.
He deployed five months to Iraq in support of Iraqi Freedom, conducting experimental airborne reconnaissance.
He enjoys exercise, flying, snow skiing and scuba.
Follow Nick Hague on Twitter at @AstroHague and follow NASA on Tumblr for your regular dose of space.