Uploaded September 2024 | Updated September 2026, 2 hours ago
As streamed live on 20 Sept 2024
“Follow the water” has long been the mantra of astrobiologists in search of life in the universe, as H2O remains the fundamental building block of all life as we know it. To truly understand the nature of possible ecosystems outside our planet, we must directly investigate the liquid water that our NASA missions have discovered within moons and planets across our solar system.
From Callisto and Ganymede to Enceladus, what could future exploration of these watery worlds look like?
Join us for a live talk where we’ll discuss the scientific allure of ocean worlds, how we might investigate the surface of these celestial bodies, and learn about robotic technologies being developed at JPL that could someday penetrate a frozen world’s icy shell to explore a vast ocean hidden beneath.
Speakers:
Dr. Cynthia Phillips, planetary geologist and Europa Clipper project staff scientist at NASA JPL
Dr. Benjamin Hockman, robotics technologist at NASA JPL
Host:
Gregory Smith, communications and education directorate at NASA JPL
Co-host:
Laurance Fauconnet, solar system public engagement lead at NASA JPL
#JPL #NASA
As streamed live on 20 Sept 2024
“Follow the water” has long been the mantra of astrobiologists in search of life in the universe, as H2O remains the fundamental building block of all life as we know it. To truly understand the nature of possible ecosystems outside our planet, we must directly investigate the liquid water that our NASA missions have discovered within moons and planets across our solar system.
From Callisto and Ganymede to Enceladus, what could future exploration of these watery worlds look like?
Join us for a live talk where we’ll discuss the scientific allure of ocean worlds, how we might investigate the surface of these celestial bodies, and learn about robotic technologies being developed at JPL that could someday penetrate a frozen world’s icy shell to explore a vast ocean hidden beneath.
Speakers:
Dr. Cynthia Phillips, planetary geologist and Europa Clipper project staff scientist at NASA JPL
Dr. Benjamin Hockman, robotics technologist at NASA JPL
Host:
Gregory Smith, communications and education directorate at NASA JPL
Co-host:
Laurance Fauconnet, solar system public engagement lead at NASA JPL
#JPL #NASA








![Hubble’s Inside the Image: The Veil Nebula
NASAs Hubble Space Telescope has captured a breathtaking image of the Veil Nebula, a remnant of a supernova explosion that showcases delicate, wispy filaments of ionized gas.
In this video, Dr. Ken Carpenter delves into the stunning details of the Veil Nebula and explains how Hubbles observations shed light on the complex processes involved in the aftermath of a stars explosive death.
For more information, visit https://nasa.gov/hubble.
Credit: NASAs Goddard Space Flight Center
Producer, Director & Editor: James Leigh
Director of Photography: James Ball
Executive Producers: James Leigh & Matthew Duncan
Production & Post: Origin Films
Video Credits:
Hubble Space Telescope Animation:
ESA/Hubble - M. Kornmesser & L. L. Christensen
Music Credits:
Transcode by Lee Groves [PRS], and Peter George Marett [PRS] via Universal Production Music
Perennial Ice by Matthew Nicholson [PRS], and Suki Jeanette Finn [PRS] via Atmosphere Music Ltd. [PRS] and Universal Production Music
#Astronomy #Hubble #NASA Hubble’s Inside the Image: The Veil Nebula](https://i.ytimg.com/vi/O90RjhfqSFE/mqdefault.jpg)
![NOAA Releases Initial Imagery from the GOES-19 Lightning Mapper
The Geostationary Lightning Mapper (GLM) instrument, onboard NOAA’s GOES-19 satellite, is now continuously observing lightning over the Western Hemisphere. GOES-19 launched on June 25, 2024. GLM detects and maps total lightning—in-cloud, cloud-to-cloud, and cloud-to-ground—continuously over the Americas and adjacent ocean regions. GLM offers insights beyond the presence of a lightning strike, revealing the spatial and temporal extent of lightning flashes.
Recently, the GOES-19 GLM detected and monitored lightning activity in two extremely hazardous hurricanes. On Sept. 24, 2024, GLM observed widespread lightning as a cluster of thunderstorms in the western Caribbean Sea consolidated into Tropical Storm Helene. Continuous lightning in the outer rain bands was accompanied by occasional eyewall lightning, as Hurricane Helene rapidly intensified in the eastern Gulf of Mexico.
Frequent lightning completely enveloped the eyewall as the storm intensified further on its final approach to the Florida coastline. Away from the storm center, GLM helped identify the most intense thunderstorms most likely to produce tornadoes.
Credits:
NOAA
NASA Goddard Space Flight Center
CIRA
Lockheed Martin
CISESS - UMD
B-roll provided by Artbeats
Music:
“Movimento” by Max Cameron Concors [ASCAP]; Hypersonic Music; Universal Production Music
#Satellites #GOES19 #NOAA NOAA Releases Initial Imagery from the GOES-19 Lightning Mapper](https://i.ytimg.com/vi/OHzL1NNfo3w/mqdefault.jpg)
