Saturday, August 01, 2026

Interstellar Comet 3I/ATLAS | Vera C. Rubin Observatory—LSST Camera

Interstellar Comet 3I/ATLAS | Vera C. Rubin ObservatoryLSST Camera

The faint coma and tail glow of comet 3I/ATLAS were captured by the National Science Foundation–Department of Energy Vera C. Rubin Observatory, jointly funded by the U.S. National Science Foundation (NSF) and the U.S. Department of Energy's Office of Science (DOE/SC), on December 19, 2025. Comet 3I/ATLAS is only the third known visitor from another star system to pass through our Solar System. The comet reappeared from behind the Sun in November 2025 after spending several weeks out of view from Earth. By the time of this observation, the object was at its closest point to Earth on its outward journey toward interstellar space. Rubin incidentally imaged this object months earlier during testing activities, before it was identified as an interstellar comet.

What makes this NOIRLab image special is the amount of detail captured in a single 30-second exposure. Usually, revealing the faint glow of a comet’s tail requires a much longer exposure—one that would show the background stars and galaxies as blurry streaks. However, Rubin’s light-collecting power and highly sensitive LSST Camera capture the comet’s delicate tail in just 30 seconds while keeping the distant background objects crisp and clear.

Objects like 3I/ATLAS are rare and scientifically valuable. Unlike the common comets and asteroids that formed alongside our Sun, interstellar objects were formed in other planetary systems. At a point in their distant past, they were ejected from their home systems by gravitational interactions. After being cast out, these objects travel through interstellar space, occasionally passing through another planetary system like our own. When they appear in our neighborhood, they give scientists a rare opportunity to study material formed around other stars—assuming we can catch a glimpse of them while they are close by.

This is where the Rubin Observatory shines. Unlike telescopes that focus on individual targets or small regions of space, Rubin is a survey telescope that repeatedly scans large portions of the sky. With its extremely wide field of view and ability to detect very faint light sources, Rubin catches dim, moving objects that might otherwise go unnoticed. Additionally, Rubin sends out an alert for every change it detects, so scientists can be on the lookout for unusual objects moving through our Solar System. 

With Rubin data, researchers expect to discover many more interstellar visitors passing through our neighborhood, each carrying clues about the processes that shape planets and small bodies around other stars. Studying these objects in greater numbers will help scientists better understand how planetary systems, including our own, form and evolve.

Learn more about the new Vera Rubin Observatory:

The LSST Camera (LSSTCam)

An Introduction to Vera Rubin:

Credits:
NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC/AURA
Acknowledgement: C. O. Chandler (University of Washington)
Image Date: Dec. 19, 2025
Release Date: July 15, 2026

#NASA #Astronomy #Space #Science #InterstellarObjects #InterplanetaryBodies #InterstellarComets #InterstellarComet3I #Comet3I #Comet3IATLAS #StarSystems #SolarSystem #MilkyWayGalaxy #Universe #LSSTCam #SimonyiSurveyTelescope #RubinObservatory #VeraRubin #CerroPachón #Chile #NOIRLab #NSF #DOE #AURA #UnitedStates #Chile #Europe #STEM #Education 

Highlights of The COSMOS Field | Vera C. Rubin Observatory—LSST Camera

Highlights of The COSMOS Field | Vera C. Rubin ObservatoryLSST Camera

This exceptionally deep image from NSF–DOE Vera C. Rubin Observatory reveals the renowned COSMOS field and its surroundings in the constellation Sextans. The view is crowded with galaxies and galaxy clusters spanning an immense range of distances and cosmic ages, while only a handful of foreground stars belong to our own Milky Way. It was created by combining multiple observations from Rubin’s LSST Camera into a deep coadded image and is being released to mark Early Data Preview 2, the first Rubin data preview based on LSST Camera observations.

Packed into this single image from Rubin Observatory are many kinds of galaxies: spirals with delicate arms, smooth elliptical galaxies, distorted merging galaxies, and faint red galaxies from the distant Universe. Only a relatively small number of bright stars from our own Milky Way appear in the foreground, leaving an unusually clear view of galaxies stretching far into the distance.

This image was captured with Rubin’s 3.2-gigapixel LSST Camera—the largest digital camera in the world, mounted on the 8.4-meter Simonyi Survey Telescope. It was created by stacking hundreds of individual observations and contains more than half a million galaxies and more than 50,000 stars.

The COSMOS field was selected more than two decades ago to provide astronomers with a relatively unobstructed window into the distant Universe. Located away from the crowded plane of the Milky Way, it contains comparatively few bright stars and little intervening dust, and it is accessible to major observatories on Earth and in space. Even in this exceptionally clear region, Rubin’s remarkable sensitivity reveals traces of faint, glowing galactic cirrus: wisps of interstellar dust within our own Milky Way superimposed on the much more distant cosmic landscape.

Early Data Preview 2 comes on the heels of the beginning of the Legacy Survey of Space and Time (LSST). With its ability to observe the southern sky deeply, widely, and repeatedly, Rubin Observatory is poised to transform many areas of astronomy.

Learn more about the new Vera Rubin Observatory:

The LSST Camera (LSSTCam)

An Introduction to Vera Rubin:

Credit: NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC/AURA
Release Date: July 31, 2026

#NASA #Astronomy #Space #Science #Stars #Galaxies #GalaxyClusters #CosmosField #SextansConstellation #Cosmos #Universe #LSSTCam #SimonyiSurveyTelescope #RubinObservatory #VeraRubin #CerroPachón #Chile #NOIRLab #NSF #DOE #AURA #UnitedStates #STEM #Education

A Journey Deep into The COSMOS Field | Vera C. Rubin Observatory

A Journey Deep into The COSMOS Field | Vera C. Rubin Observatory


This exceptionally deep image from NSF–DOE Vera C. Rubin Observatory reveals the renowned COSMOS field and its surroundings in the constellation Sextans. The view is crowded with galaxies and galaxy clusters spanning an immense range of distances and cosmic ages, while only a handful of foreground stars belong to our own Milky Way. It was created by combining multiple observations from Rubin’s LSST Camera into a deep coadded image and is being released to mark Early Data Preview 2, the first Rubin data preview based on LSST Camera observations.

Packed into this single image from Rubin Observatory are many kinds of galaxies: spirals with delicate arms, smooth elliptical galaxies, distorted merging galaxies, and faint red galaxies from the distant Universe. Only a relatively small number of bright stars from our own Milky Way appear in the foreground, leaving an unusually clear view of galaxies stretching far into the distance.

This image was captured with Rubin’s 3.2-gigapixel LSST Camera—the largest digital camera in the world, mounted on the 8.4-meter Simonyi Survey Telescope. It was created by stacking hundreds of individual observations and contains more than half a million galaxies and more than 50,000 stars.

The COSMOS field was selected more than two decades ago to provide astronomers with a relatively unobstructed window into the distant Universe. Located away from the crowded plane of the Milky Way, it contains comparatively few bright stars and little intervening dust, and it is accessible to major observatories on Earth and in space. Even in this exceptionally clear region, Rubin’s remarkable sensitivity reveals traces of faint, glowing galactic cirrus: wisps of interstellar dust within our own Milky Way superimposed on the much more distant cosmic landscape.

Early Data Preview 2 comes on the heels of the beginning of the Legacy Survey of Space and Time (LSST). With its ability to observe the southern sky deeply, widely, and repeatedly, Rubin Observatory is poised to transform many areas of astronomy.

Learn more about the new Vera Rubin Observatory:

The LSST Camera (LSSTCam)

An Introduction to Vera Rubin:

Credit: NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC/AURA
Duration: 1 minute
Release Date: July 31, 2026

#NASA #Astronomy #Space #Science #Stars #Galaxies #GalaxyClusters #CosmosField #SextansConstellation #Cosmos #Universe #LSSTCam #SimonyiSurveyTelescope #RubinObservatory #VeraRubin #CerroPachón #Chile #NOIRLab #NSF #DOE #AURA #UnitedStates #STEM #Education #HD #Video

Close-up Looks Deep into The COSMOS Field | Vera C. Rubin Observatory

Close-up Looks Deep into The COSMOS Field | Vera C. Rubin Observatory

This exceptionally deep image from NSF–DOE Vera C. Rubin Observatory reveals the renowned COSMOS field and its surroundings in the constellation Sextans. The view is crowded with galaxies and galaxy clusters spanning an immense range of distances and cosmic ages, while only a handful of foreground stars belong to our own Milky Way. It was created by combining multiple observations from Rubin’s LSST Camera into a deep coadded image and is being released to mark Early Data Preview 2, the first Rubin data preview based on LSST Camera observations.

Packed into this single image from Rubin Observatory are many kinds of galaxies: spirals with delicate arms, smooth elliptical galaxies, distorted merging galaxies, and faint red galaxies from the distant Universe. Only a relatively small number of bright stars from our own Milky Way appear in the foreground, leaving an unusually clear view of galaxies stretching far into the distance.

This image was captured with Rubin’s 3.2-gigapixel LSST Camera—the largest digital camera in the world, mounted on the 8.4-meter Simonyi Survey Telescope. It was created by stacking hundreds of individual observations and contains more than half a million galaxies and more than 50,000 stars.

The COSMOS field was selected more than two decades ago to provide astronomers with a relatively unobstructed window into the distant Universe. Located away from the crowded plane of the Milky Way, it contains comparatively few bright stars and little intervening dust, and it is accessible to major observatories on Earth and in space. Even in this exceptionally clear region, Rubin’s remarkable sensitivity reveals traces of faint, glowing galactic cirrus: wisps of interstellar dust within our own Milky Way superimposed on the much more distant cosmic landscape.

Early Data Preview 2 comes on the heels of the beginning of the Legacy Survey of Space and Time (LSST). With its ability to observe the southern sky deeply, widely, and repeatedly, Rubin Observatory is poised to transform many areas of astronomy.

Learn more about the new Vera Rubin Observatory:

The LSST Camera (LSSTCam)

An Introduction to Vera Rubin:

Credit: NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC/AURA
Duration: 52 seconds
Release Date: July 31, 2026

#NASA #Astronomy #Space #Science #Stars #Galaxies #GalaxyClusters #CosmosField #SextansConstellation #Cosmos #Universe #LSSTCam #SimonyiSurveyTelescope #RubinObservatory #VeraRubin #CerroPachón #Chile #NOIRLab #NSF #DOE #AURA #UnitedStates #STEM #Education #HD #Video

Looking Deep into The COSMOS Field | Vera C. Rubin Observatory

Looking Deep into The COSMOS Field | Vera C. Rubin Observatory

This exceptionally deep image from NSF–DOE Vera C. Rubin Observatory reveals the renowned COSMOS field and its surroundings in the constellation Sextans. The view is crowded with galaxies and galaxy clusters spanning an immense range of distances and cosmic ages, while only a handful of foreground stars belong to our own Milky Way. It was created by combining multiple observations from Rubin’s LSST Camera into a deep coadded image and is being released to mark Early Data Preview 2, the first Rubin data preview based on LSST Camera observations.

Packed into this single image from Rubin Observatory are many kinds of galaxies: spirals with delicate arms, smooth elliptical galaxies, distorted merging galaxies, and faint red galaxies from the distant Universe. Only a relatively small number of bright stars from our own Milky Way appear in the foreground, leaving an unusually clear view of galaxies stretching far into the distance.

This image was captured with Rubin’s 3.2-gigapixel LSST Camera—the largest digital camera in the world, mounted on the 8.4-meter Simonyi Survey Telescope. It was created by stacking hundreds of individual observations and contains more than half a million galaxies and more than 50,000 stars.

The COSMOS field was selected more than two decades ago to provide astronomers with a relatively unobstructed window into the distant Universe. Located away from the crowded plane of the Milky Way, it contains comparatively few bright stars and little intervening dust, and it is accessible to major observatories on Earth and in space. Even in this exceptionally clear region, Rubin’s remarkable sensitivity reveals traces of faint, glowing galactic cirrus: wisps of interstellar dust within our own Milky Way superimposed on the much more distant cosmic landscape.

Early Data Preview 2 comes on the heels of the beginning of the Legacy Survey of Space and Time (LSST). With its ability to observe the southern sky deeply, widely, and repeatedly, Rubin Observatory is poised to transform many areas of astronomy.

Learn more about the new Vera Rubin Observatory:

The LSST Camera (LSSTCam)

An Introduction to Vera Rubin:

Credit: NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC/AURA
Release Date: July 31, 2026

#NASA #Astronomy #Space #Science #Stars #Galaxies #GalaxyClusters #CosmosField #SextansConstellation #Cosmos #Universe #LSSTCam #SimonyiSurveyTelescope #RubinObservatory #VeraRubin #CerroPachón #Chile #NOIRLab #NSF #DOE #AURA #UnitedStates #STEM #Education

Friday, July 31, 2026

Milky Way Galaxy Dreams | International Space Station

Milky Way Galaxy Dreams | International Space Station

Expedition 71/72 flight engineer and NASA astronaut Don Pettit: "I finally have all 1.2 million raw image files from my latest mission to ISS! Here is a sample of one of my favorite Milky Way photos, taken from the Cupola with Nikon Z9, Arri Zeiss 15mm lens, T1.8 with custom sidereal drive that cancelled out star motion relative to our orbit."

NASA astronaut Don Pettit returned to Earth on April 19, 2025, concluding a seven-month science mission aboard the International Space Station. Pettit spent 220 days in space, earning him a total of 590 days in space over the course of his four spaceflights. He orbited the Earth 3,520 times, traveling 93.3 million miles in low-Earth orbit.


Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jack Hathaway, Anil Menon

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credits: NASA/JSC/D. Pettit
Release Date: July 31, 2026


#NASA #Space #Science #ISS #Earth #Galaxies #MilkyWay #Astronauts #DonPettit #AstronautPhotography #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

SpaceX Starship View from Starlink V3 Satellite on Flight 13 | Starbase Texas

SpaceX Starship View from Starlink V3 Satellite on Flight 13 | Starbase Texas

The thirteenth flight test of Starship successfully launched Friday, July 24, 2026, at 5:51 p.m. Central Time (CT). This was the second flight of the Starship and Super Heavy V3 vehicles and the first Starship flight to deploy "next generation" Starlink V3 satellites.

Watch the launch broadcast and read the full flight report here: 

The flight test began with Super Heavy igniting all 33 Raptor 3 engines and ascending over the Gulf of Mexico. The successful first-stage ascent was followed by a hot-staging maneuver with Starship’s upper stage igniting its six Raptor engines to continue its flight to space.

Following stage separation, the Super Heavy booster performed a directional flip maneuver. The startup sequence was modified for this flight to be more robust to timing variability in engine startup and flip in the desired direction. This is done to increase overall performance. The booster successfully completed the high thrust portion of the boostback burn with all 33 engines, the first time with a Super Heavy V3, before ending the burn early. It attempted to relight its engines for the landing burn with a subset successfully igniting before experiencing a hard splashdown in the Gulf.

After completing a full-duration ascent burn on all six Raptor engines, Starship achieved its planned velocity and trajectory. Starship then successfully deployed all 20 Starlink V3 satellites. SpaceX engineers were able to successfully communicate with every satellite using radio frequency and laser links and downloaded key telemetry from the satellites. The Starlink satellites were deployed on the pre-planned trajectory and are expected to have demised upon reentry approximately 20 minutes after deployment.

The vehicle also reignited a single Raptor engine in an in-space demonstration of a core capability for future orbital missions.

Starship re-entered the Earth’s atmosphere and was able to gather critical data on the performance of its heatshield before executing a dynamic banking move to mimic the trajectory that future missions returning to Starbase will fly. Starship then guided itself using its four flaps to the pre-planned splashdown zone in the Indian Ocean. After relighting all three Raptor engines, Starship executed a landing flip, landing burn, and soft splashdown, coming to rest intact in the Indian Ocean and providing critical views of an intact heatshield for the first time.

NASA plans to use a lunar lander version of Starship to deliver astronauts and cargo to the Moon during the Artemis IV mission and beyond through the Human Landing System (HLS) Program.

Download the Free Starship User Guide (PDF):
https://www.spacex.com/media/starship_users_guide_v1.pdf

Credit: Space Exploration Technologies Corporation (SpaceX)
Time: 1 min
Date: July 24, 2026

#NASA #SpaceX #Space #Earth #StarlinkSatellites #Moon #ArtemisProgram #ArtemisIII #ArtemisIV #Starship #StarshipV3 #FlightTest13 #ReusableSpacecraft #SuperHeavyBooster #SuperHeavyV3 #ElonMusk #Engineering #SpaceTechnology #HumanSpaceflight #CommercialSpace #SpaceExploration #StarbaseTexas #UnitedStates #STEM #Education #HD #Video

Moon Dreaming | International Space Station

Moon Dreaming | International Space Station

The International Space Station’s Canadarm2 robotic arm dominates the foreground, with the waxing gibbous Moon seen more than 240,000 miles away from Earth. The Artemis II mission was in its first day in space, en route to a lunar flyby several days later. 
Expedition 75 flight engineer and NASA astronaut Anil Menon: "Full Moon today. The International Space Station feels so close. And, that’s why it’s a step toward NASA's Artemis program . . . "
The waxing gibbous Moon is seen from the International Space Station as the Artemis II mission begins its first day in space, en route to a lunar flyby several days later.
The waxing gibbous Moon is seen from the International Space Station as the Artemis II mission begins its first day in space, en route to a lunar flyby several days later.
The waning crescent Moon is pictured on April 10, 2026, from the International Space Station as the Artemis II mission was completing its final day in space, following the first crewed lunar flyby in more than 50 years.

Expedition 75 on the International Space Station ended July 2026, stepping up preparations for the first of three spacewalks planned for the month of August. NASA flight engineer Anil Menon tried on his spacesuit on Friday, July 31, 2026, to get ready for his first career spacewalk planned for Thursday, Aug. 6. 


Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jack Hathaway, Anil Menon

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credits: NASA/JSC/Sophie Adenot/Chris Williams/Anil Menon
Dates: April 1-July 29, 2026


#NASA #Space #Science #ISS #Earth #Moon #ArtemisProgram #Canadarm2 #CSA #Canada #Astronauts #AstronautPhotography #ESA #CNES #France #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #Expedition74 #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

What's Up for August 2026: Skywatching Tips from NASA | JPL

What's Up for August 2026: Skywatching Tips from NASA | JPL

Here are examples of skywatching highlights for the northern hemisphere in August 2026: A solar eclipse, one of the year's best meteor showers, Venus at its brightest in the evening sky, and a partial lunar eclipse to close out the month.

On August 12, a total solar eclipse crosses northern Russia, Greenland, Iceland, northern Spain, and a small corner of Portugal. In parts of the United States, from Alaska to North Carolina, the eclipse will be partial. Use certified eclipse glasses or a safe solar viewer whenever any part of the Sun is visible.

Later that night, the Perseid meteor shower peaks under the dark skies of the New Moon. Around August 14 through 16, Venus shines low in the west after sunset, and on August 27-28, a partial lunar eclipse is visible from much of the Americas and parts of Europe and Africa.

0:00 Intro
0:11 Solar eclipse
0:41 Perseid meteor shower
1:27 Venus after sunset
1:41 Partial lunar eclipse
2:22 August Moon phases

Additional information about topics covered in this episode of What's Up, along with still images from the video, and the video transcript, are available at https://science.nasa.gov/skywatching/whats-up/

Find events and clubs with NASA's Night Sky Network: https://science.nasa.gov/skywatching/night-sky-network/

Skywatching resources from NASA: https://science.nasa.gov/skywatching


Credit: NASA/JPL-Caltech
Duration: 2 minutes, 43 seconds
Release Date: July 31, 2026

#NASA #Astronomy #Space #Science #SolarSystem #Planets #Earth #Moon #SolarEclipses #PerseidMeteorShower #MeteorShowers #Venus #Stars #Nebulae #Galaxies #MilkyWayGalaxy #Skywatching #JPL #Caltech #UnitedStates #Canada #Mexico #NorthernHemisphere #STEM #Education #HD #Video

The Biggest Discoveries after Four Years of Science | James Webb Space Telescope

The Biggest Discoveries after Four Years of Science | James Webb Space Telescope


Previously unseen details all throughout the universe, including right here in our own solar system have been revealed using NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope, and the results so far, are fascinating.

Webb has given scientists, and the world, a powerful new set of tools to help better explain our place in the universe. And with its unprecedented power to detect and analyze otherwise invisible infrared light, objects that were once impossible to observe are now coming into clear view.

Webb is an international partnership between NASA, the European Space Agency, and the Canadian Space Agency (CSA).

For more information, visit https://nasa.gov/webb

Under an international collaboration agreement, the European Space Agency (ESA) provided the telescope’s launch service, using the Ariane 5 launch vehicle. Working with partners, ESA was responsible for the development and qualification of Ariane 5 adaptations for the Webb mission and for the procurement of the launch service by Arianespace. ESA also provided the workhorse spectrograph NIRSpec and 50% of the mid-infrared instrument MIRI, which was designed and built by a consortium of nationally funded European Institutes (The MIRI European Consortium) in partnership with JPL and the University of Arizona.


Credit:
Producer: Paul Morris
Writer: Thaddeus Cesari
Narrator: Dr. Jane Rigby
Images: NASA, ESA, CSA, STSci
Duration: 5 minutes, 24 seconds
Release Date: July 31, 2026


#NASA #ESA #Astronomy #Space #Science #Stars #Planets #SolarSystem #Exoplanets #Supernovae #Nebulae #Galaxies #GravitationalLensing #Cosmos #Universe #JWST #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #GSFC #STScI #UnitedStates #CSA #Canada #STEM #Education #HD #Video

NASA's Nancy Grace Roman Space Telescope Highlights: Winter/Spring 2026

NASA's Nancy Grace Roman Space Telescope Highlights: Winter/Spring 2026

The Nancy Grace Roman Space Telescope is now complete. This video, covering the first half of 2026, highlights examples of the final hardware milestones. 

It opens with an aerial view of the complete observatory inside NASA’s Goddard Space Flight Center’s largest clean room, the Spacecraft Systems Development and Integration Facility. The room is a class 10,000 clean room with over one million cubic feet of space.

Parts of Roman stow for launch. Once in space, these deployable components move into their operational positions. Engineers test these deployments on the ground to make sure they will go as planned in space. Four of the six Solar Array Sun Shield panels deploy. They fold against the spacecraft to fit inside the rocket fairing and then deploy in space to make a large flat plane that both collects light to generate electricity and helps keep the rest of Roman cool. The Deployable Aperture Cover (DAC), protecting the mirrors during launch and then unfolds to help shield them from sunlight, also test deploys. During this test, lines connect to it and pull upward to negate Earth’s gravitational forces, that Roman will not experience in space. 

In preparation for vibration and acoustic testing, technicians put a clean tent over Roman and transport it out of the clean room. They push it next to the massive vibration tables, one shakes horizontally and the other vertically. A crane lifts Roman and the tent onto the tables, and also performs a 90-degree rotation after one horizontal test so that Roman can be tested on a different axis with the same table. Engineers attach hundreds of sensors and run tests of increasing intensity. During and after each test, they carefully study the data to make sure that Roman is behaving as anticipated.

For the acoustic test, they push it into the test chamber where a six-foot-tall horn projects up to 150-decibel sound at varying frequencies. A thick door seals the chamber and prevents most of the sound from escaping, although ear protection is still required for anyone nearby during a test. These tests are mostly to ensure that Roman can survive the rigors of launch. Once in space, it won’t be subjected to nearly as much force.

Once the tests are successfully completed, Roman re-enters the clean room and the tent is removed. Technicians lift Roman to a special rollover fixture that can safely tilt and spin Roman’s 18,500 pound mass. Once Roman is tilted horizontal for the first time as a full observatory, engineers slowly spin it through 360 degrees to make sure everything stays in place like it is supposed to.

After the rotations, technicians carefully perform a manual opening of the DAC to reveal the mirror. In this position, they can inspect the entire optical path all the way back to the instrument sensors and perform surface cleaning on the inside of the protective outer barrel and DAC. This is also a chance for final goodbyes to the mirror. Once the DAC is closed, no one will ever see the mirror as clearly again.

With all the assembly and testing at Goddard completed, the team begins the delicate process of loading Roman into an airtight container known as the Conditioned Housing for Air, Road, Imaging optics assembly, and Observatory Transport (CHARIOT). First they attach arms which will form the interior sides and support Roman. Then they lift and move Roman into the lower bed of the CHARIOT. An inner lid goes on first, followed by a larger outer lid with ducting to keep the observatory the right temperature and preserve the clean environment. As the CHARIOT leaves the clean room, Roman takes its first step in the journey to space.

The Roman telescope and the discoveries it will support:
https://www.stsci.edu/roman


Credit: NASA’s Goddard Space Flight Center
Producer: Scott Wiessinger (eMITS)
Videographers: Sophia Roberts (eMITS)
  Scott Wiessinger (eMITS)
  Rob Andreoli (eMITS)
  John Philyaw (eMITS)
  Jolearra Tshiteya (ASRC Federal)
Drone Pilot: Francis Reddy (University of Maryland College Park)
Editor: Scott Wiessinger (eMITS)
Duration: 3 minutes
Release Date: July 31, 2026

#NASA #Space #Astronomy #Science #NASARoman #RomanSpaceTelescope #NancyGraceRomanSpaceTelescope #NancyGraceRoman #Exoplanets #Planets #SolarSystem #Stars #MilkyWayGalaxy #Galaxies #Cosmos #Universe #SpaceTelescopes #NASAGoddard #GSFC #Greenbelt #Maryland #STScI #UnitedStates #STEM #Education #HD #Video

Spiral Galaxy NGC 772 in Aries | Hubble Space Telescope

Spiral Galaxy NGC 772 in Aries | Hubble Space Telescope

The Universe is simply so vast that it can be difficult to maintain a sense of scale. Many galaxies we see through telescopes, such as this NASA/European Space Agency Hubble Space Telescope picture, look relatively similar: spiraling arms, a glowing center, and a mixture of bright specks of star formation and dark ripples of cosmic dust weaving throughout.

Distance from Earth: 100-130 million light years

This galaxy, a spiral galaxy named NGC 772, is no exception. It actually has much in common with our home galaxy, the Milky Way. Each boasts a few satellite galaxies, small galaxies that closely orbit and are gravitationally bound to their parent galaxies. One of NGC 772’s spiral arms has been distorted and disrupted by one of these satellites (NGC 770—not visible in the image here), leaving it elongated and asymmetrical.

However, the two are also distinct in a few key ways. For one, NGC 772 is a peculiar and an unbarred spiral galaxy; respectively, this means that it is somewhat odd in size, shape, or composition, and that it lacks a central feature known as a bar that we see in many galaxies throughout the cosmos—including the Milky Way. These bars are built of gas and stars, and are thought to funnel and transport material through the galactic core, possibly fueling and igniting various processes, such as star formation.


Credit: ESA/Hubble & NASA, A. Seth et al.
Release Date: Nov. 11, 2019


#NASA #Hubble #Astronomy #Space #Science #Galaxies #NGC772 #PeculiarGalaxies #SpiralGalaxies #UnbarredSpiralGalaxies #AriesConstellation #Cosmos #Universe #HubbleSpaceTelescope #HST #ESA #Europe #GSFC #STScI #UnitedStates #STEM #Education

Thursday, July 30, 2026

How NASA's Nancy Grace Roman Space Telescope May Change Everything

How NASA's Nancy Grace Roman Space Telescope May Change Everything

How do you build a telescope capable of surveying the universe on an unprecedented scale? 

Join NASA’s Roman Project Scientist, Dr. Julie McEnery, as she explains how the Nancy Grace Roman Space Telescope will discover thousands of new worlds, map billions of galaxies, and investigate the mysteries of dark matter and dark energy. 

Learn why scientists believe Roman could open the door to entirely new discoveries about our universe.

The Roman telescope and the discoveries it will support:
https://www.stsci.edu/roman



Credit: NASA's Goddard Space Flight Center 
Dr. Julie McEnery: Talent
Paul Morris: Producer / Editor
John Philyaw: Camera Operator
Duration: 5 minutes
Release Date: July 30, 2026

#NASA #Space #Astronomy #Science #NASARoman #RomanSpaceTelescope #NancyGraceRomanSpaceTelescope #NancyGraceRoman #Exoplanets #Planets #SolarSystem #Stars #MilkyWayGalaxy #Galaxies #Cosmos #Universe #SpaceTelescopes #NASAGoddard #GSFC #STScI #UnitedStates #STEM #Education #HD #Video

China Launches New Communication Technology Test Satellites from Shanxi

China Launches New Communication Technology Test Satellites from Shanxi










🚀Mission Accomplished! China sent two new communication technology test satellites, TJSW-27A and TJSW-27B, into a highly inclined low Earth orbit from the Taiyuan Satellite Launch Center in north China's Shanxi Province on Thursday, July 30, 2026. The satellites were launched at 9:00 (Beijing Time) (01:00 am Universal Coordinated Time) aboard a modified Long March 6A carrier rocket and entered their planned orbits successfully. They will be mainly used for services, such as satellite communications, broadcasting and television, and data transmission, as well as to carry out related technology tests and verification. 🛰️✨

Like other members of the TJSW fleet, the duo is expected to demonstrate new developments in multi-band, high-throughput communications technologies for radio, television, and data transmission. Their technical development was split between the China Academy of Spaceflight Technology that made 27A and the Shanghai Academy of Spaceflight Technology producing 27B.

TJSW-27A and TJSW-27B are the fifth spacecraft of their series to be launched this year, after 2025’s significant expansion. This year saw TJSW-24 deployed in May, the large TJSW-25 delivered in early June, and the first of a likely subset in late June’s TJSW-26A.

This launch was the 26th mission for the Long March 6A, the 272nd Long March vehicle from the Shanghai Academy of Spaceflight Technology, and the 660th launch of the Long March launch vehicle series. This was also the 53rd launch from China in 2026.


Credit: China Aerospace Science and Technology Corporation, CGTN 
Text Credit: CCTV, Jack C.
Date: July 30, 2026

#NASA #Space #Satellites #CommunicationsSatellites #TJSW27A #通信技术试验卫星二十七号A #TJSW27B #通信技术试验卫星二十七B星 #CAST #SAST #Science #SpaceTechnology #Earth #China #中国 #LongMarch6Rocket #长征六号运载火箭 #LongMarch6AY18 #TaiyuanSatelliteLaunchCenter #TSLC #Taiyuan #Shanxi #山西 #STEM #Education

China Launches New Communication Technology Test Satellites from Shanxi

China Launches New Communication Technology Test Satellites from Shanxi

🚀Mission Accomplished! China sent two new communication technology test satellites, TJSW-27A and TJSW-27B, into a highly inclined low Earth orbit from the Taiyuan Satellite Launch Center in north China's Shanxi Province on Thursday, July 30, 2026. The satellites were launched at 9:00 (Beijing Time) (01:00 am Universal Coordinated Time) aboard a modified Long March 6A carrier rocket and entered their planned orbits successfully. They will be mainly used for services, such as satellite communications, broadcasting and television, and data transmission, as well as to carry out related technology tests and verification. 🛰️✨

Like other members of the TJSW fleet, the duo is expected to demonstrate new developments in multi-band, high-throughput communications technologies for radio, television, and data transmission. Their technical development was split between the China Academy of Spaceflight Technology that made 27A and the Shanghai Academy of Spaceflight Technology producing 27B.

TJSW-27A and TJSW-27B are the fifth spacecraft of their series to be launched this year, after 2025’s significant expansion. This year saw TJSW-24 deployed in May, the large TJSW-25 delivered in early June, and the first of a likely subset in late June’s TJSW-26A.

This launch was the 26th mission for the Long March 6A, the 272nd Long March vehicle from the Shanghai Academy of Spaceflight Technology, and the 660th launch of the Long March launch vehicle series. This was also the 53rd launch from China in 2026.


Credit: CCTV
Text Credit: CCTV/Jack C.
Duration: 27 seconds
Date: July 30, 2026

#NASA #Space #Satellites #CommunicationsSatellites #TJSW27A #通信技术试验卫星二十七号A #TJSW27B #通信技术试验卫星二十七B星 #CAST #SAST #Science #SpaceTechnology #Earth #China #中国 #LongMarch6Rocket #长征六号运载火箭 #LongMarch6AY18 #TaiyuanSatelliteLaunchCenter #TSLC #Taiyuan #Shanxi #山西 #STEM #Education #HD #Video

Command Handover to Meir & Williams Departure | International Space Station

Command Handover to Meir & Williams Departure | International Space Station

NASA astronaut Jessica Meir accepts a ceremonial key from Roscosmos cosmonaut Sergey Kud‑Sverchkov of Russia, signifying the traditional change of command aboard the International Space Station. Meir is leading the Expedition 75 crew until the end of summer. Kud‑Sverchkov was commander of Expedition 74 before concluding his 241‑day mission the following day with NASA astronaut Chris Williams and Roscosmos cosmonaut Sergei Mikaev of Russia (both out of frame), parachuting to a landing in Kazakhstan aboard the Soyuz MS‑28 spacecraft.
NASA astronaut and Expedition 74 flight engineer Chris Williams poses for a portrait inside the International Space Station’s Kibo laboratory module the day before returning to Earth. 
From left, NASA astronaut Chris Williams and Roscosmos cosmonauts Sergey Kud‑Sverchkov and Sergei Mikaev of Russia are seated inside the Russian Soyuz MS‑28 spacecraft docked to the International Space Station. The trio practiced and reviewed the landing procedures they would use a few days later, after undocking from the orbital outpost and parachuting to Earth aboard the Soyuz.
NASA astronaut Jessica Meir poses for a portrait inside the Kibo laboratory module after acccepting command of the International Space Station from Roscosmos cosmonaut Sergey Kud-Sverchkov of Russia (out of frame). Meir will lead the Expedition 75 crew until the end of summer.
NASA astronaut Jessica Meir poses for a portrait inside the Kibo laboratory module after acccepting command of the International Space Station from Roscosmos cosmonaut Sergey Kud-Sverchkov of Russia (out of frame). Meir will lead the Expedition 75 crew until the end of summer.
NASA astronaut and Expedition 74 flight engineer Anil Menon services a spacesuit and its components inside the International Space Station's Quest airlock.
Expedition 74 emblem
Expedition 75 emblem

NASA astronaut Chris Williams recently completed a 241‑day mission aboard the International Space Station with Roscosmos cosmonauts Sergey Kud‑Sverchkov and Sergei Mikaev of Russia before undocking from the station aboard the Russian Soyuz MS‑28 spacecraft and parachuting to a safe landing in Kazakhstan. 

Expedition 75 officially began and Expedition 74 ended when their Soyuz departed the orbital outpost on July 26, 2026.

Follow Expedition 75:

Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jack Hathaway, Anil Menon

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credits: NASA/JSC/J. Meir/Anil Menon
Dates: July 17-25, 2026


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