Uploaded April 2026 | Updated September 2026, 2 weeks ago
Artemis II completed a 10-day journey around the Moon, carrying humanity farther into space than it has gone in over 50 years.
ESA played a critical role in the mission’s success. The European Service Module powered and sustained Orion throughout the journey, providing propulsion, power, water and breathable air for the crew.
Mostly built with contributions from 13 ESA Member States—Germany, Italy, France, Switzerland, the Netherlands, Belgium, Spain, Norway, Denmark, Sweden, Austria, the United Kingdom and Luxembourg—the module represents Europe’s strength in international cooperation.
Looking ahead, ESA will continue to deliver on its commitments to the Artemis programme while advancing Europe’s own ambitions in exploration. Work is underway to strengthen autonomy in key space capabilities and define Europe’s role across low Earth orbit, the Moon and Mars.
As a new era of exploration unfolds, Europe is positioning itself as a strong, reliable and competitive partner in the emerging lunar economy.
Credits: European Space Agency (ESA)
*Correction - 2:30 40 000 KM/H*
Access the video on the ESA video library: https://www.esa.int/ESA_Multimedia/Videos/2026/04/Artemis_II_around_the_Moon_in_10_days
★ Subscribe: bit.ly/ESAsubscribe and click twice on the bell button to receive our notifications.
We are Europe's gateway to space. Our mission is to shape the development of Europe's space capability and ensure that investment in space continues to deliver benefits to the citizens of Europe and the world. Check out https://www.esa.int/ to get up to speed on everything space related.
Copyright information about our videos is available here: https://www.esa.int/ESA_Multimedia/Terms_and_Conditions
Artemis II completed a 10-day journey around the Moon, carrying humanity farther into space than it has gone in over 50 years.
ESA played a critical role in the mission’s success. The European Service Module powered and sustained Orion throughout the journey, providing propulsion, power, water and breathable air for the crew.
Mostly built with contributions from 13 ESA Member States—Germany, Italy, France, Switzerland, the Netherlands, Belgium, Spain, Norway, Denmark, Sweden, Austria, the United Kingdom and Luxembourg—the module represents Europe’s strength in international cooperation.
Looking ahead, ESA will continue to deliver on its commitments to the Artemis programme while advancing Europe’s own ambitions in exploration. Work is underway to strengthen autonomy in key space capabilities and define Europe’s role across low Earth orbit, the Moon and Mars.
As a new era of exploration unfolds, Europe is positioning itself as a strong, reliable and competitive partner in the emerging lunar economy.
Credits: European Space Agency (ESA)
*Correction - 2:30 40 000 KM/H*
Access the video on the ESA video library: https://www.esa.int/ESA_Multimedia/Videos/2026/04/Artemis_II_around_the_Moon_in_10_days
★ Subscribe: bit.ly/ESAsubscribe and click twice on the bell button to receive our notifications.
We are Europe's gateway to space. Our mission is to shape the development of Europe's space capability and ensure that investment in space continues to deliver benefits to the citizens of Europe and the world. Check out https://www.esa.int/ to get up to speed on everything space related.
Copyright information about our videos is available here: https://www.esa.int/ESA_Multimedia/Terms_and_Conditions



![What the ISS sounds like 🔉
Our astronaut Sophie Adenot shared this video on her social media channels with the caption:
[EN] Day 121, orbit 1873 — Sunday morning science with Sophie, episode 9: Hunting for sounds, part 2.
Before anyone from the NASA engineering teams starts wondering why the TOCA is clicking while it’s switched off… I obviously could not turn it on just for the purpose of this video, so I recorded the sound later on during actual operations. It’s my absolute favourite sound onboard the Station! The sound consists of the checkout of several valves, which are used by this Total Organic Carbon Analyzer. This beautiful piece of engineering is used to test the quality of the Stations drinking water. 98% of the water onboard is recycled, isn’t it amazing?
[FR] Jour 121, orbite 1873 – La science du dimanche matin avec Sophie, épisode 9 : Chasse aux sons, partie 2.
Avant que quiconque ne se demande pourquoi le TOCA cliquète alors qu’il est éteint… Je ne pouvais évidemment pas l’allumer juste pour cette vidéo, j’ai donc enregistré le son plus tard, pendant des opérations réelles. C’est de loin mon son favori à bord de la Station ! Il s’agit en fait de la vérification de plusieurs valves du Total Organic Carbon Analyzer, une petite merveille d’ingénierie qui teste la qualité de l’eau potable de la Station. Nous recyclons 98% de notre eau à bord – épatant, non ?
📹 ESA/NASA
#ESA #Astronaut #ISS What the ISS sounds like 🔉](https://i.ytimg.com/vi/oA0WiJPcaJ4/mqdefault.jpg)






![Science on the ISS: IV Fluid 🧪
Our astronaut Sophie Adenot shared this video on her social media channels with the caption:
[EN] Day 091, orbit 1410 — In this timelapse, I’m first setting up and then carrying out a technology demonstration called Intravenous Fluid Generation – Mini. It explores how the Station’s supply of potable water could be used to produce medical‑grade intravenous fluids, such as saline solutions.
Being able to produce IV fluids in space would reduce our reliance on cargo missions and prevent the issue of expired medical supplies during long‑duration exploration missions. One of many examples of the key role the Station plays in inventing the future of space exploration!
The large piece of equipment I’m working in is a sealed laboratory workspace, the Life Science Glovebox, located in the Japanese Kibo module. And if you’re wondering why I’m “tethered” for this experiment… The black one is an antistatic grounding strap. It’s connected to a metal surface and helps keep our body electrically neutral (more on static electricity soon!). The white one is the radio connecting me to POIC Huntsville, who guided me through this experiment.
Congrats Huntsville! Congrats IVGEN teams, especially Alex M., Alex S., Brian, Courtney, John, Kimesha, Moriah, Nathan, Robert, and Toni!
[FR] Jour 091, orbite 1410 — Dans ce timelapse, j’installe puis réalise une démonstration technologique appelée Intravenous Fluid Generation – Mini. Elle vise à évaluer si la réserve d’eau potable de la Station pourrait être utilisée pour produire des fluides intraveineux de qualité médicale, par exemple des solutions salines.
Disposer de cette capacité permettrait de réduire notre dépendance aux missions de ravitaillement et d’éviter les problèmes liés à la péremption des stocks médicaux lors des missions d’exploration de longue durée. C’est l’un des nombreux exemples du rôle clé que joue la Station dans l’invention du futur de l’exploration spatiale.
J’effectue l’expérience dans un espace laboratoire fermé, le Life Science Glovebox, situé dans le module japonais Kibo. Et si vous vous demandez pourquoi je suis « attachée » pendant cette expérience… Le câble noir est celui d’un bracelet antistatique, relié à une surface métallique, qui permet de maintenir notre corps électriquement neutre (je publierai très bientôt une vidéo sur l’électricité statique!). Le blanc est la radio qui me relie au POIC de Huntsville, dont les équipes m’ont guidée tout au long de cette expérience.
Félicitations à Huntsville et aux équipes IVGEN !
📹 ESA/NASA
#ESA #Astronaut #ISS Science on the ISS: IV Fluid 🧪](https://i.ytimg.com/vi/pQtnFmspnTM/mqdefault.jpg)