Anatomy of a Space Shuttle

Anatomy of a Space Shuttle

An illustration of a space shuttle orbiter on a white background. There are cutaways revealing different parts of the orbiter, like the hydrazine and nitrogen tetroxide tanks, engines, and thrusters at left, and the flight deck, mid-deck, and nose gear at front. The orbiter is white and in the middle, has a U.S. flag on it as well as the words "United States" and the initials "USA."
This illustration shows the parts of a space shuttle orbiter. About the same size and weight as a DC-9 aircraft, the orbiter contains the pressurized crew compartment (which can normally carry up to seven crew members), the cargo bay, and the three main engines mounted on its aft end.
NASA

This 2001 illustration labels important parts of a space shuttle orbiter. The orbiter was the heart and brains of the space shuttle and served as the crew transport vehicle that carried astronauts to and from space. The space shuttle was comprised of the orbiter, the main engines, the external tank, and the solid rocket boosters. The space shuttle was the world’s first reusable spacecraft and the first spacecraft in history that could carry large satellites both to and from orbit.

Image credit: NASA

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Monika Luabeya

“Hubble at 35 Years” Symposium Explores Insights from Hubble’s Past

“Hubble at 35 Years” Symposium Explores Insights from Hubble’s Past

As Hubble marks three and a half decades of scientific breakthroughs and technical resilience, the “Hubble at 35 Years” symposium offers a platform to reflect on the mission’s historical, operational, and scientific legacy. Hubble’s trajectory—from early challenges to becoming a symbol of American scientific ingenuity—presents valuable lessons in innovation, collaboration, and crisis response. Bringing together scientists, engineers, and historians at NASA Headquarters ensures that this legacy informs current and future mission planning, including operations for the James Webb Space Telescope, Roman Space Telescope, and other next-generation observatories. The symposium not only honors Hubble’s transformative contributions but also reinforces NASA’s commitment to learning from the past to shape a more effective and ambitious future for space science.

Hubble at 35 Years

Lessons Learned in Scientific Discovery and NASA Flagship Mission Operations

October 16–17, 2025
James Webb Auditorium, NASA HQ, Washington, D.C.

Hubble Space Telescope backdropped by the Earth and space
The giant Hubble Space Telescope (HST) can be seen as it is suspended in space by Discovery’s Remote Manipulator System (RMS) following the deployment of part of its solar panels and antennae on April 25, 1990.
NASA

The story of the Hubble Space Telescope confirms its place as the most transformative and significant astronomical observatory in history. Once called “the eighth wonder of the world” by a former NASA administrator, Hubble’s development since its genesis in the early 1970s and its launch, repair, and ultimate impact since 1990 provide ample opportunity to apply insights from its legacy. Scientists and engineers associated with groundbreaking discoveries have always operated within contexts shaped by forces including the government, private industry, the military, and the public at large. The purpose of this symposium is to explore the insights from Hubble’s past and draw connections that can inform the development of mission work today and for the future.

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Michele Ostovar

NASA, International Astronauts Answer Questions from Florida Students

NASA, International Astronauts Answer Questions from Florida Students

The seven-member Expedition 73 crew poses for a portrait inside the International Space Station's Zvezda service module.
The seven-member Expedition 73 crew poses for a portrait inside the International Space Station’s Zvezda service module.
Credit: NASA

Students in Big Pine Key, Florida, will have the chance to have NASA astronauts aboard the International Space Station answer their prerecorded questions.

At 10:05 a.m. EDT on Monday, July 14, NASA astronaut Nicole Ayers and JAXA (Japan Aerospace Exploration Agency) astronaut Takuya Onishi will answer questions submitted by students.

Watch the 20-minute Earth-to-space call on NASA STEM’s YouTube Channel.

The event is hosted by the Seacamp Association of Big Pine Key, Florida, which provides immersive science lessons for youth interested in discovering the sea. The event will be attended by local Monroe County students, as well as national and international campers ages 10-17 years old. The goal of the event is to help students make connections between astronauts training in space and scientists working in the sea.  

Media interested in covering the event must RSVP by 5 p.m. EDT, Friday, July 11, to Judy Gregoire at: 305-872-2331 or email at: info@seacamp.org.

For nearly 25 years, astronauts have continuously lived and worked aboard the space station, testing technologies, performing science, and developing skills needed to explore farther from Earth. Astronauts aboard the orbiting laboratory communicate with NASA’s Mission Control Center in Houston 24 hours a day through SCaN’s (Space Communications and Navigation) Near Space Network.

Important research and technology investigations taking place aboard the space station benefit people on Earth and lay the groundwork for other agency missions. As part of NASA’s Artemis campaign, the agency will send astronauts to the Moon to prepare for future human exploration of Mars; inspiring Golden Age explorers and ensuring the United States continues to lead in space exploration and discovery.

See videos of astronauts aboard the space station at:

https://www.nasa.gov/stemonstation

-end-

Gerelle Dodson
Headquarters, Washington
202-358-1600
gerelle.q.dodson@nasa.gov

Sandra Jones
Johnson Space Center, Houston
281-483-5111
sandra.p.jones@nasa.gov

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Gerelle Q. Dodson

I Am Artemis: Joe Pavicic

I Am Artemis: Joe Pavicic

2 Min Read

I Am Artemis: Joe Pavicic

Image shows man smiling in black shirt with NASA's Artemis logo.

Listen to this audio excerpt from Joe Pavicic, Artemis operations project engineer

0:00 / 0:00

Joe Pavicic will never forget when he told the Artemis launch director teams were NO-GO for launch.

Before Artemis I lifted off from NASA’s Kennedy Space Center in Florida in November 2022, the launch team made multiple launch attempts the months prior.  

“During a previous Artemis I launch attempt, there was an issue with engine three,” said Pavicic, operations project engineer who worked on the engines console during Artemis I. “One sensor was showing that it wasn’t seeing liquid hydrogen through it. It was showing that it was at ambient temperature.”

And I had to tell the launch director, ‘We can’t get there today with the current criteria that we have. My recommendation is a NO-GO.’

Joe pavicic

Joe pavicic

Operations Project Engineer

Prior to engine ignition, launch team controllers must first chill the engines before the cryogenic liquid propellant fuels and lifts the SLS (Space Launch System) rocket and Orion spacecraft into the heavens and onward to the Moon. Chilling the engines ensures the hardware doesn’t get damaged when exposed to the super-cooled liquid hydrogen at -423 degrees Fahrenheit.   

NASA/Kim Shiflett

“We tried everything we could think of,” Pavicic recalls. “Any procedure we could try, we tried it, and we just never saw those rates that we should have.” 

Thus, Pavicic, who is originally from West Palm Beach and studied aerospace engineering at Embry Riddle Aeronautical University in Daytona Beach, Florida, went back to the drawing board with the rest of his team, working days and nights rewriting procedures and learning new lessons about the engines and sensors until they were finally able to get to a successful launch. 

“I just remember after I said, ‘NO-GO,’ I felt like all these people came to watch the launch, all my family, and I’m like, ‘I’m the guy,’ but I told myself, ‘I’m not going to be the one to say this for the next launch attempt. I’m going to do what I can to get us there.’ 

joe pavicic

joe pavicic

Operations Project Engineer

NASA successfully launched and flew the Artemis I mission and now, Pavicic is working as one of the operations project engineers, continuing to help the launch team develop new launch commit criteria and procedures within the launch countdown ahead of Artemis II, the first crewed Artemis mission, which will send four astronauts around the Moon and back in 10 days next year.  

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Antonia Jaramillo

Antonia Jaramillo

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Jul 09, 2025

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Antonia Jaramillo

Polar Tourists Give Positive Reviews to NASA Citizen Science in Antarctica

Polar Tourists Give Positive Reviews to NASA Citizen Science in Antarctica

2 min read

Polar Tourists Give Positive Reviews to NASA Citizen Science in Antarctica

Citizen science projects result in an overwhelmingly positive impact on the polar tourism experience. That’s according to a new paper analyzing participant experiences in the first two years of FjordPhyto, a NASA Citizen Science project..  

The FjordPhyto citizen science project invites travelers onboard expedition cruise vessels to gather data and samples during the polar summer season, helping researchers understand changes in microalgae communities in response to melting glaciers. Travelers in Antarctica from November to March help collect phytoplankton and ocean data from polar regions facilitated by trained expedition guides. 

The new research found that ninety-seven percent of respondents reported that participating in citizen science enriched their travel experience. The paper provides a first understanding of the impact of citizen science projects on the tourism experience.  

“I was worried that I would feel guilty being a tourist in a place as remote and untouched as Antarctica,” said one anonymous FjordPhyto participant. “But being able to learn and be a part of citizen science, whilst constantly being reminded of our environmental responsibilities, made me feel less like just a visitor and more a part of keeping the science culture that Antarctica is known for alive and well.” 

For more information and to sign up, visit the FjordPhyto website

Scientists in cold-weather gear collect a water sample from a small boat in a polar region, with others observing from a nearby inflatable boat.
Travelers in Antarctica participate in collecting phytoplankton and ocean data from polar regions facilitated by trained expedition guides.
Credit: Mathew Farrell courtesy of Robert Gilmore

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Jul 09, 2025

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