Monday, May 18, 2026

Spiral Galaxies NGC 3166 & NGC 3169 in Sextans | Mayall Telescope

Spiral Galaxies NGC 3166 & NGC 3169 in Sextans | Mayall Telescope

This image was obtained with the wide-field view of the Mosaic camera on the Mayall 4-meter telescope at Kitt Peak National Observatory. NGC 3166 (lower right) and NGC 3169 (upper left) are two spiral galaxies trapped in a death spiral. As these two galaxies begin to merge, they are starting to be pulled apart. The faint wisps surrounding NGC 3169 are its outer spiral arms being pulled off. Eventually these two galaxies will merge to form a single galaxy. NGC 3165, the small galaxy below NGC 3166, is also a member of this group. 

Distance from Earth: ~70 million light-years away

The image was generated with observations in the B (blue), V (green), I (orange) and Hydrogen-Alpha (red) filters. This image is rotated clockwise 30 degrees from north is up, east is to the left.

The Nicholas U. Mayall Telescope is a four-meter (158 inches) reflector telescope in Arizona named after the American observational astronomer of the same name. The telescope saw first light on February 27, 1973, and was the second-largest in the world at that time.

Learn more about the Mayall Telescope: 
https://noirlab.edu/science/programs/kpno/telescopes/nicholas-mayall-4m-telescope


Credit:T.A. Rector (University of Alaska Anchorage) and H. Schweiker (WIYN and NOIRLab/NSF/AURA)
Image Credit: June 30, 2020


#NASA #Astronomy #Space #Science #Galaxies #NGC3166 #NGC3169 #InteractingGalaxies #SextansConstellation #Cosmos #Universe #MayallTelescope #KPNO #Arizona #NSF #AURA #UnitedStates #STEM #Education

Antares & The Rho Ophiuchi Dark Cloud | Australian Astronomical Observatory

Antares & The Rho Ophiuchi Dark Cloud | Australian Astronomical Observatory

The dusty region between Ophiuchus and Scorpius contains examples of the most colorful and spectacular nebulae ever photographed. The upper part of the picture is filled with the bluish glow of light from hot stars reflected by a huge, cool cloud of dust and gas where such stars are born. This dust is also seen as a dark nebula, a molecular cloud, hiding the light of background stars, especially on middle left (east) of the picture.

Dominating the lower half of this cosmic landscape is the over-exposed image of the red supergiant star Antares, a star that it is steadily shedding material from its distended surface as it nears the end of its life. These tiny, smoke-like solid particles reflect Antares' light and hide it in a nebula of its own making. Antares and its nebula are about 600 light years away. Partly surrounding Sigma Scorpii (735 light years distant) at the right of the picture is a red emission nebula, completing the most comprehensive collection of nebular types ever seen in one photograph. There is also two globular clusters, one of the nearest to the sun, M4 (NGC 6121, 4500 light years away) at lower center right and NGC 6144, 28,000 light years away and much fainter, buried behind Antares' haze

Like all the images on these pages, this picture was made from three black and white glass negatives. Care has been taken to ensure that the colors are realistic.

Photograph made from plates taken in June 1979 (G,R), and July 1979 (B). Image width is about 3.5 degrees.


Image Credit: David Malin
Copyright: Australian Astronomical Observatory
Date: Aug. 15, 1979

#NASA #Space #Astronomy #Science #Nebulae #EmissionNebulae #Stars #StarClusters #GlobularClusters #Antares #NGC6144 #M4 #StellarNurseries #RhoOphiuchi #CloudComplex #SigmaScorpii #OphiuchusConstellation #Cosmos #Universe #Astronomers #DavidMalin #AustralianAstronomicalObservatory #Australia #STEM #Education

Planet Mars Images: May 15-17, 2026 | NASA's Curiosity & Perseverance Rovers

Planet Mars Images: May 15-17, 2026 | NASA's Curiosity & Perseverance Rovers

Mars 2020 - sol 1862
Mars 2020 - sol 1862
Mars 2020 - sol 1862
Mars 2020 - sol 1859
Mars 2020 - sol 1861
MSL - sol 4896
MSL - sol 4897
Mars 2020 - sol 1862

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Celebrating 13+ Years on Mars (2012-2025)
Mission Name: Mars Science Laboratory (MSL)
Rover Name: Curiosity
Main Job: To determine if Mars was ever habitable to microbial life. 
Launch: Nov. 6, 2011
Landing Date: Aug. 5, 2012, Gale Crater, Mars

Celebrating 5+ Years on Mars
Mission Name: Mars 2020
Rover Name: Perseverance
Main Job: Seek signs of ancient life and collect samples of rock and regolith (broken rock and soil) for return to Earth.
Launch: July 30, 2020
Landing: Feb. 18, 2021, Jezero Crater, Mars

For more information on NASA's Mars missions, visit: mars.nasa.gov

Image Credits: NASA/JPL-Caltech/ASU/MSSS
Processing: Kevin M. Gill
Release Dates: May 15-17, 2026

#NASA #Space #Astronomy #Science #Planets #Mars #Astrobiology #Geology #CuriosityRover #MSL #MountSharp #GaleCrater #PerseveranceRover #Mars2020 #JezeroCrater #Robotics #SpaceTechnology #SpaceEngineering #MSSS #JPL #Caltech #UnitedStates #CitizenScience #KevinGill #STEM #Education

China Long March-8 Rocket Launches New Satellites for Spacesail Constellation

China Long March-8 Rocket Launches New Satellites for Spacesail Constellation

China launched a Long March-8 carrier rocket on May 17, 2026, in Hainan, sending a new satellite group into space. The rocket lifted off at 22:42 (Beijing Time) from the Hainan commercial spacecraft launch site. The satellite group, the ninth batch that will constitute the Spacesail (Qianfan) Constellation, entered the preset orbit successfully.

Qianfan is China's first giant low-orbit commercial satellite constellation to enter the formal networking phase. It will build a satellite Internet system that provides high-speed, real-time, secure, and reliable integrated solutions and services connecting space, air, ground and sea, independently constructed and operated by China. The project launched its first batch of satellites in August 2024 and aims to have a full operational network of more than 15,000 low-Earth orbit satellites in place by 2030. Qianfan is designed to support China's Belt and Road Initiative, providing secure digital links for Chinese businesses and infrastructure projects across the globe.

The Long March-8 rocket that carried out this mission is a member of the Long March 8 family. Together with the Long March-8A carrier rocket, the two models feature the payload capacity of 5 tonnes and 7 tonnes to sun-synchronous orbit, respectively. This underscores China's upgraded launch capabilities for deploying satellites into medium and low Earth orbits.

This year, the Long March 8 rockets will enter a high-density launch schedule, continuing to support the development of China's low-Earth orbit satellite Internet constellation and the high-quality development of the country's commercial space sector. 


Video Credit: CCTV
Duration: 24 seconds 
Release Date: May 18, 2026

#NASA #Space #Science #Earth #Satellites #SpaceSailConstellation #QianfanConstellation #千帆星座 #China #中国 #CNSA #中国国家航天局 #Rockets #LongMarch8Rockets #长征八号运载火箭  #MediumLiftRockets #CASC #SpaceTechnology #CommercialSpace #CommercialSpaceflight #Spaceports #Wenchang #Hainan #STEM #Education #HD #Video

Sunday, May 17, 2026

Aurora Australis Streams above Indian Ocean | International Space Station

Aurora Australis Streams above Indian Ocean | International Space Station


The aurora australis streams serenely above the Indian Ocean southwest of Perth, Australia, in this photograph taken at approximately 10:20 p.m. local time from the International Space Station as it orbited 268 miles above the Earth.

Expedition 74 Crew
Station Commander: Sergey-Kud Sverchkov (Russia)
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev, Sergei Mikaev
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jessica Meir, Jack Hathaway, Chris Williams

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.


Credit: ESA/Sophie Adenot
Date: May 7, 2026


#NASA #Space #Science #Astronomy #ISS #Earth #IndianOcean #Aurora #AuroraAustralis #Astronauts #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #InternationalCooperation #Expedition74 #SpaceLaboratory #MicrogravityExperiments #JSC #UnitedStates #ESA #Europe #STEM #Education

Star Cluster Westerlund 2 in Carina | Webb Telescope+Chandra X-ray Observatory

Star Cluster Westerlund 2 in Carina | Webb Telescope+Chandra X-ray Observatory

This image of Westerlund 2 features Chandra X-ray Observatory data (pink) and James Webb infrared data (red, orange, green, cyan, and blue). Scores of gleaming stars ringed in neon pink stretch across the frame, highlighting a cluster where stars are between one and three million years old. Brick-orange dust clouds along the bottom edge illustrate the raw materials of this active stellar nursery.

The cluster measures between 6 light-years and 13 light-years across, and is host to examples of our Milky Way galaxy's hottest, brightest, and most massive stars.


Credit: X-ray: NASA/CXC/SAO/Sejong Univ./Hur et al; JWST: ESA/Webb, NASA & CSA, V. Almendros-Abad, M. Guarcello, K. Monsch, and the EWOCS team
Image Processing: NASA/CXC/SAO/L. Frattare and K. Arcand
Release Date: May 15, 2026

#NASA #Space #Astronomy #Science #Stars #StarClusters #Westerlund2 #BrownDwarfs #Nebulae #Carina #Constellations #Astrophysics #Cosmos #Universe #JWST #MIRI #NIRCam #InfraredAstronomy #NASAChandra #XrayAstronomy #SpaceTelescopes #ESA #CSA #GSFC #STScI #CXC #UnitedStates #STEM #Education

Close-up: Star Cluster NGC 6380 in Scorpius | Hubble Space Telescope

Close-up: Star Cluster NGC 6380 in Scorpius | Hubble Space Telescope

This image shows the globular cluster NGC 6380. It lies around 35,000 light-years from Earth in the constellation Scorpio (The Scorpion). The very bright star at the top of the image is HD 159073, only around 4,000 light-years from Earth—making it a much nearer neighbor than NGC 6380. This image was taken with Hubble’s Wide Field Camera 3 (WFC3). As its name suggests, this instrument has a wide field of view, meaning that it can image relatively large areas of the sky in enormous detail.

NGC 6380 is not a particularly exciting name, but it indicates that this cluster is cataloged in the New General Catalog (NGC), originally compiled in 1888. This cluster has, however, been known by many other names. It was originally discovered by James Dunlop in 1826, and he rather immodestly named it Dun 538. Eight years later, in 1834, it was independently rediscovered by John Herschel and he (similarly immodestly) went on to name it H 3688. The cluster was re-rediscovered in 1959 in Paris by Pişmiş, who cataloged it as Tonantzintla 1—and to continue the pattern, also referred to it as Pişmiş 25. In addition to its colorful history of rediscovery, up until the 1950s NGC 6380 was thought to be an open cluster. It was A. D. Thackeray that realized that it was in fact a globular cluster. Nowadays, this cluster is reliably recognized in widely available catalogs as a globular cluster, and referred to simply as NGC 6380. 


Credit: ESA/Hubble & NASA, E. Noyola
Duration: 30 seconds
Date: July 12, 2021

#NASA #ESA #Hubble #Astronomy #Space #Science #Stars #StarClusters #GlobularClusters #NGC6380 #StarHD159073 #ScorpiusConstellation #Cosmos #Universe #HST #HubbleSpaceTelescope #GSFC #STScI #UnitedStates #Europe #STEM #Education #HD #Video

Rediscovered, Renamed, Reclassified: Star Cluster NGC 6380 in Scorpius | Hubble

Rediscovered, Renamed, Reclassified: Star Cluster NGC 6380 in Scorpius | Hubble


This image shows the globular cluster NGC 6380. It lies around 35,000 light-years from Earth in the constellation Scorpio (The Scorpion). The very bright star at the top of the image is HD 159073, only around 4,000 light-years from Earth—making it a much nearer neighbor than NGC 6380. This image was taken with Hubble’s Wide Field Camera 3 (WFC3). As its name suggests, this instrument has a wide field of view, meaning that it can image relatively large areas of the sky in enormous detail.

NGC 6380 is not a particularly exciting name, but it indicates that this cluster is cataloged in the New General Catalog (NGC), originally compiled in 1888. This cluster has, however, been known by many other names. It was originally discovered by James Dunlop in 1826, and he rather immodestly named it Dun 538. Eight years later, in 1834, it was independently rediscovered by John Herschel and he (similarly immodestly) went on to name it H 3688. The cluster was re-rediscovered in 1959 in Paris by Pişmiş, who cataloged it as Tonantzintla 1—and to continue the pattern, also referred to it as Pişmiş 25. In addition to its colorful history of rediscovery, up until the 1950s NGC 6380 was thought to be an open cluster. It was A. D. Thackeray that realized that it was in fact a globular cluster. Nowadays, this cluster is reliably recognized in widely available catalogs as a globular cluster, and referred to simply as NGC 6380. 


Credit: ESA/Hubble & NASA, E. Noyola
Date: July 12, 2021


#NASA #ESA #Hubble #Astronomy #Space #Science #Stars #StarClusters #GlobularClusters #NGC6380 #StarHD159073 #ScorpiusConstellation #Cosmos #Universe #HST #HubbleSpaceTelescope #GSFC #STScI #UnitedStates #Europe #STEM #Education

Expedition 74 Crew Photos: April-May 2026 | International Space Station

Expedition 74 Crew Photos: April-May 2026 | International Space Station

From left, Expedition 74 flight engineers Sophie Adenot of the European Space Agency and Jessica Meir of NASA pose for a portrait inside the International Space Station’s cupola on Mother’s Day. Adenot, who has a son, and Meir, who has a daughter, join hands to form a heart and wear T‑shirts celebrating motherhood.


European Space Agency astronaut and Expedition 74 flight engineer Sophie Adenot speaks to students on the ground using the International Space Station's ham radio. The ARISS, or Amateur Radio on the International Space Station, program gives students around the world the opportunity to talk directly with crew members aboard the orbital outpost, inspiring them to pursue careers in science, technology, engineering, and math.
European Space Agency astronaut and Expedition 74 flight engineer Sophie Adenot works inside the Kibo laboratory module’s Life Science Glovebox, processing blood stem cell samples to learn how to produce larger quantities of clinical‑grade stem cells in space. Results from this biotechnology investigation may lead to improved stem‑cell qualities, potentially enhancing treatments for blood diseases and cancer while also expanding commercial opportunities in space.
NASA astronaut and Expedition 74 flight engineer Jessica Meir works inside the International Space Station's Harmony module conducting a biotechnology investigation to observe how tiny, engineered materials that mimic DNA behave in microgravity. Meir pointed a light-measuring device, called a spectrophotometer, at the DNA-like sample materials housed in small transparent containers to analyze their ability to form stable structures. Doctors on Earth will use the research data to learn how to improve and develop future treatments, or nano-therapies, that target cancer cells more precisely.
NASA astronauts Jack Hathaway and Chris Williams, both Expedition 74 flight engineers prepare the NanoRacks External Platform—carrying three scientific payloads—for installation inside the Kibo laboratory module’s airlock where it will be placed outside in the vacuum of space. The payloads will test ultra‑high‑resolution hyperspectral imagery, measure radio signals passing through Earth’s ionosphere, and help doctors identify space‑sensitive proteins while evaluating mobility and neuromuscular health therapies. 

NASA astronaut and Expedition 74 flight engineer Chris Williams speaks to students on the ground using the International Space Station's ham radio. The ARISS, or Amateur Radio on the International Space Station, program gives students around the world the opportunity to talk directly with crew members aboard the orbital outpost, inspiring them to pursue careers in science, technology, engineering, and math.

NASA astronaut and Expedition 74 flight engineer Jack Hathaway installs the NanoRacks External Platform—carrying three scientific payloads—inside the Kibo laboratory module’s airlock for placement outside in the vacuum of space. The payloads will test ultra‑high‑resolution hyperspectral imagery, measure radio signals passing through Earth’s ionosphere, and help doctors identify space‑sensitive proteins while evaluating mobility and neuromuscular health therapies.

Station Update: At 6:37 a.m. EDT on May 17, 2026, the SpaceX Dragon spacecraft docked to the forward port of the International Space Station’s Harmony module, carrying nearly 6,500 pounds of food, supplies, and equipment for the Expedition 74 crew. This is the 34th SpaceX commercial resupply services mission to the space station for NASA.

In addition to cargo for the crew aboard the space station, Dragon is delivering several new experiments, including a project  to determine how well Earth-based simulators  mimic microgravity conditions, a bone scaffold made from wood that could produce new treatments for fragile bone conditions like osteoporosis, and equipment to help researchers evaluate how red blood cells and the spleen change in space. The Dragon spacecraft also will carry a new instrument to study charged particles around the Earth that can impact power grids and satellites, an investigation that could provide a fundamental understanding of how planets form, and an  instrument designed to take highly accurate measurements of sunlight reflected by Earth and the Moon.

The mission launched at 6:05 p.m. May 15 aboard a SpaceX Falcon 9 rocket from Cape Canaveral in Florida.

Expedition 74 Crew
Station Commander: Sergey-Kud Sverchkov (Russia)
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev, Sergei Mikaev
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jessica Meir, Jack Hathaway, Chris Williams

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 Credit: NASA's Johnson Space Center
Dates: April 18-May 13, 2026


#NASA #Space #Science #Astronomy #ISS #Earth #Astronauts #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #InternationalCooperation #Expedition74 #SpaceLaboratory #MicrogravityExperiments #JSC #UnitedStates #ESA #Europe #STEM #Education

Auroras, Thunderstorms & Bright City Lights | International Space Station

Auroras, Thunderstorms & Bright City Lights | International Space Station

Extended version: Auroras, thunderstorms, and brightly lit cities streak across this nighttime timelapse captured by European Space Agency astronaut Sophie Adenot during the 2026 Lyrids meteor shower.


Expedition 74 Crew
Station Commander: Sergey-Kud Sverchkov (Russia)
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev, Sergei Mikaev
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jessica Meir, Jack Hathaway, Chris Williams

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.


Credits: European Space Agency (ESA)
Duration: 4 minutes, 21 seconds
Release Date: May 17, 2026


#NASA #Space #Science #Astronomy #ISS #Earth #Aurora #LightningStorms #MeteorStorms #Lyrids #Astronauts #AstronautVideography #SophieAdenot #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #InternationalCooperation #Expedition74 #JSC #UnitedStates #ESA #Europe #SpaceLaboratory #MicrogravityExperiments #STEM #Education #HD #Video

Shenzhou-21 Receives New Supplies, Continues Experiments | China Space Station

Shenzhou-21 Receives New Supplies, Continues Experiments | China Space Station

Nearly 200 days into their mission aboard China's Tiangong Space Station, the Shenzhou-21 astronauts, Zhang Lu, Wu Fei and Zhang Hongzhang, remain in good condition. After receiving fresh supplies from the Tianzhou-10 cargo spacecraft recently, they have pressed ahead with a new round of in-orbit experiments, facility maintenance, and health checks.

The three astronauts entered the space station on Nov 1, 2025. Having completed a full six-month stay in excellent condition as of early May, the crew has begun their one-month extended mission aboard the Tiangong space station. With the extension, the Shenzhou-21 mission is poised to surpass the previous orbital record of 204 days set by the Shenzhou-20 crew.

On May 6, 2026, the crew completed preparations for the departure of the Tianzhou-9 cargo spacecraft that undocked from the space station at 16:34 Beijing time. The astronauts monitored the separation process via a live cabin feed, bidding farewell to Tianzhou-9.

Five days later, on May 11, Tianzhou-10 was launched from the Wenchang Spacecraft Launch Site. The crew watched the launch and docking live on the cabin screens, and that evening they opened the hatches to begin unpacking the nearly 6.2 tonnes of new supplies.

The Tianzhou-10 delivery includes experiment payloads, test units, samples, consumables and spare parts, supporting 41 space science research projects in orbit. Among them is a highly anticipated experiment on synthetic human embryo models (also known as artificial embryos) in space, designed to explore the effects of microgravity and space radiation on early human development and tissue formation.

The crew has also been conducting a range of scientific tests. Using laptops and specialized software, they have performed behavior tests to study the patterns and mechanisms of exploration, utilization and decision-making in space, as well as the influence of microgravity and shifting attention on the asymmetry of upward and downward visual fields.

In the field of microgravity physical science, the astronauts have completed tasks, such as replacing combustion experiment plug sampling covers and burners according to the experimental schedule for microgravity combustion research.

In terms of space station platform maintenance, the crew has carried out routine tasks including organizing cabin supplies and inspecting equipment for the regenerative life support system.

For health management, they have regularly performed ultrasound scans of the abdomen, heart and blood vessels, electrocardiograms, ambulatory blood pressure and heart rate monitoring, and intraocular pressure and fundus examinations. The collected in-orbit physiological data are transmitted to ground teams for continuous dynamic medical monitoring and health assessment.

In the coming days, the Shenzhou-21 crew will continue with scheduled tasks including inventory checks, transfer of supplies, and in-orbit equipment inspections, steadily advancing their mission objectives.

Shenzhou-21 Crew
Zhang Lu (张陆) - Commander & Pilot - 2nd spaceflight
Wu Fei (武飞)  Flight Engineer - 1st spaceflight
Zhang Hong Zhang (张洪章) - Payload Specialist - 1st spaceflight


Video Credit: CCTV
Duration: 2 minutes
Release Date: May 17, 2026

#NASA #Space #Science #China #中国 #Shenzhou21Mission #神舟二十一号 #Shenzhou21 #Taikonauts #Astronauts #LongDurationMission #ZhangLu #WuFei #ZhangHongzhang #LongDurationMissions #ChinaSpaceStation #中国空间站 #TiangongSpaceStation #MicrogravityExperiments #SpaceLaboratory #CNSA #国家航天局 #HumanSpaceflight #STEM #Education #HD #Video

Saturday, May 16, 2026

Comet C/2025 R3 (PanSTARRS): View from Namibia

Comet C/2025 R3 (PanSTARRS): View from Namibia

C/2025 R3 (PanSTARRS) is a hyperbolic Oort cloud comet. It passed perihelion (closest approach to the Sun) on April 19, 2026, when it was 0.499 astronomical units (AU) (75 million kilometers) from the Sun. The comet was discovered by PanSTARRS in images obtained on September 8, 2025.

The Panoramic Survey Telescope and Rapid Response System (Pan-STARRS) located at Haleakala Observatory, Hawaii, USA, consists of astronomical cameras, telescopes and a computing facility that is surveying the sky for moving or variable objects on a continual basis, and also producing accurate astrometry and photometry of already-detected objects. The Pan-STARRS Project is a collaboration between the University of Hawaiʻi Institute for Astronomy, MIT Lincoln Laboratory, Maui High Performance Computing Center and Science Applications International Corporation (SAIC). The NASA Near Earth Object Observation Program is the main funder for the operation of the Pan-STARRS telescopes.

Namibia, officially the Republic of Namibia, is a country in southern Africa. Its borders include the Atlantic Ocean to the west, Angola and Zambia to the north, Botswana to the east and South Africa to the south; in the northeast, approximating a quadripoint, Zimbabwe lies less than 200 meters (660 feet) away along the Zambezi River near Kazungula, Zambia.


Image Credit: Leo Van Hoyweghen
Image Details:  Picture taken with a remote telescope from Hakos (Namibia); Telescope: Sky Watcher Esprit 120ED Camera: ZWO ASI 2600MC
Leo's website: https://www.flickr.com/photos/190414664@N06/
Date: May 6, 2026 


#NASA #Astronomy #Space #Science #Planets #Earth #Comets #CometC2025R3Panstarrs #OortCloud #SolarSystem #MilkyWayGalaxy #Cosmos #Universe #Astrophotography #DominiqueDierick #Astrophotographers #Namibia #Belgium #STEM #Education

Comet C/2025 R3 (PanSTARRS) and The Orion Nebula: View from Chile

Comet C/2025 R3 (PanSTARRS) and The Orion Nebula: View from Chile

Astrophotographer Alan C. Tough: "Still sporting an impressive ion tail, comet C/2025 R3 (PanSTARRS) is seen here passing by the Great Nebula in Orion, M42."

C/2025 R3 (PanSTARRS) is a hyperbolic Oort cloud comet. It passed perihelion (closest approach to the Sun) on April 19, 2026, when it was 0.499 AU (75 million km) from the Sun. The comet was discovered by PanSTARRS in images obtained on September 8, 2025.

The Panoramic Survey Telescope and Rapid Response System (Pan-STARRS) located at Haleakala Observatory, Hawaii, USA, consists of astronomical cameras, telescopes and a computing facility that is surveying the sky for moving or variable objects on a continual basis, and also producing accurate astrometry and photometry of already-detected objects. The Pan-STARRS Project is a collaboration between the University of Hawaiʻi Institute for Astronomy, MIT Lincoln Laboratory, Maui High Performance Computing Center and Science Applications International Corporation (SAIC). The NASA Near Earth Object Observation Program is the main funder for the operation of the Pan-STARRS telescopes.

Chile, officially the Republic of Chile, is a country in western South America. It is the southernmost country in the world and the closest to Antarctica, extending along a narrow strip of land between the Andes Mountains and the Pacific Ocean. The country shared borders with Peru to the north, Bolivia to the northeast, Argentina to the east, and the Drake Passage to the south.

Image Credit: Alan C. Tough 
Remote Capture Location: Deep Sky Chile, Rio Hurtado Valley, Chile 
Date: May 9, 2026

#NASA #Astronomy #Space #Science #Nebulae #OrionNebula #Messier42 #M42 #NGC1976 #Planets #Earth #Comets #CometC2025R3Panstarrs #OortCloud #SolarSystem #Astrophotography #AlanCTough #Astrophotographers #RioHurtadoValley #Chile #STEM #Education

Long March Rocket & Shenzhou-23 Crew Spacecraft Pre-launch | China Space Station

Long March Rocket & Shenzhou-23 Crew Spacecraft Pre-launch | China Space Station








Shenzhou-23 Mission emblem

The Shenzhou-23 crewed spacecraft will be launched at an appropriate time in the near future. The combination of the spacecraft and a Long March-2F carrier rocket has been transferred to the launching area at the Jiuquan Satellite Launch Center in northwest China. After just over an hour of vertical transfer, the Shenzhou-23 spacecraft combination has now been positioned on the launch tower.

At present, engineers have ascended the tower and begun conducting preliminary inspections. Subsequent pre-launch functional checks and joint tests will be conducted as scheduled with the launch planned for a suitable time in the coming days.

"After we entered the site on April 19, each system first conducted a status check on the rocket, followed by the simultaneous execution of multiple tasks across all systems with the propulsion system completing the gas testing of the pressurized delivery system's fuel cells and the testing of the pyrotechnic devices, the structural system finishing the docking of the spacecraft and payload brackets, the closure of the fairing, and the docking of the spacecraft-carrier combination with the escape tower; and the propulsion system completing subsystem testing, small-scale and large-scale matching testing, and final system checks. So far, all system parameters meet specifications, and the rocket is operating normally. Next, we will conduct three rounds of electrical testing, primarily involving functional checks of the launch area, circuit inspections for ignition and emergency shutdown, and a full-scale launch rehearsal. Following that, we will perform a full-system gas leak test and fueling," said Xu Zheyao, a rocket designer of China Aerospace Science and Technology Corporation.

The Jiuquan Satellite Launch Center (JSLC) was founded in 1958. It was the first of China's four spaceports. The launch center has been the focus of many of China's historic space ventures, including the country's first satellite Dong Fang Hong I in 1970 and their first crewed space mission, Shenzhou V, on October 15, 2003.


Image Credit: CGTN
Date: May 16, 2026

#NASA #Space #Science #China #中国 #CASC #JSLC #LongMarch2FRocket #Shenzhou23Mission #神舟二十三号 #Shenzhou23 #Taikonauts #Astronauts #LongDurationMission #ChinaSpaceStation #中国空间站 #TiangongSpaceStation #MicrogravityExperiments #SpaceLaboratory #CNSA #国家航天局 #HumanSpaceflight #STEM #Education

Preparing to Launch Shenzhou-23 Crewed Spacecraft | China Space Station

Preparing to Launch Shenzhou-23 Crewed Spacecraft | China Space Station

The Shenzhou-23 crewed spacecraft will be launched at an appropriate time in the near future. The combination of the spacecraft and a Long March-2F carrier rocket has been transferred to the launching area at the Jiuquan Satellite Launch Center in northwest China. After just over an hour of vertical transfer, the Shenzhou-23 spacecraft combination has now been positioned on the launch tower.

At present, engineers have ascended the tower and begun conducting preliminary inspections. Subsequent pre-launch functional checks and joint tests will be conducted as scheduled with the launch planned for a suitable time in the coming days.

"After we entered the site on April 19, each system first conducted a status check on the rocket, followed by the simultaneous execution of multiple tasks across all systems with the propulsion system completing the gas testing of the pressurized delivery system's fuel cells and the testing of the pyrotechnic devices, the structural system finishing the docking of the spacecraft and payload brackets, the closure of the fairing, and the docking of the spacecraft-carrier combination with the escape tower; and the propulsion system completing subsystem testing, small-scale and large-scale matching testing, and final system checks. So far, all system parameters meet specifications, and the rocket is operating normally. Next, we will conduct three rounds of electrical testing, primarily involving functional checks of the launch area, circuit inspections for ignition and emergency shutdown, and a full-scale launch rehearsal. Following that, we will perform a full-system gas leak test and fueling," said Xu Zheyao, a rocket designer of China Aerospace Science and Technology Corporation.

The Jiuquan Satellite Launch Center (JSLC) was founded in 1958. It was the first of China's four spaceports. The launch center has been the focus of many of China's historic space ventures, including the country's first satellite Dong Fang Hong I in 1970 and their first crewed space mission, Shenzhou V, on October 15, 2003.


Video Credit: CCTV
Duration: 1 minute, 15 seconds
Release Date: May 16, 2026

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Orion Spacecraft's Rocket Lab Solar Cells: Powering NASA's Artemis Moon Missions

Orion Spacecraft's Rocket Lab Solar Cells: Powering NASA's Artemis Moon Missions

"15,000 of our high efficiency multi-junction solar cells, powering humanity's return to the lunar surface. Artemis I, Artemis II, and beyond."

Learn more about Rocket Lab: https://rocketlabcorp.com/space-systems/solar/


Video Credit: Rocket Lab
Duration: 1 minute, 35 seconds
Release Date: May 13, 2026

#NASA #Space #Science #Earth #Moon #RocketLab #SolarCells #OrionSpacecraft #LockheedMartin #ArtemisProgram #ArtemisI #ArtemisII #OrionSpacecraft #Astronauts #HumanSpaceflight #SolarSystem #SpaceExploration #UnitedStates #STEM #Education #HD #Video