NASA's Future of Flight
Picture this: It’s time to head to school, but instead of getting in a car or on a school bus, you’re picked up by a flying vehicle.
This will be an option in the not-too-distant future! In fact, there are many innovative concepts NASA is working on right now that will impact the future of flight.
We’re launching STEM Engagement to new heights with learning resources that connect teachers, students, parents and caregivers to the inspiring work at NASA. Join us as we apply science, technology, engineering and mathematics to explore space, improve aeronautics, examine Earth and strive to land the first woman and first person of color on the Moon with the Artemis program.
NASA STEM resources: stem.nasa.gov
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How We Are Going to the Moon - 4K
While Apollo placed the first steps on the Moon, Artemis opens the door for humanity to sustainably work and live on another world for the first time. Using the lunar surface as a proving ground for living on Mars, this next chapter in exploration will forever establish our presence in the stars. ✨
We are returning to the Moon – to stay – and this is how we are going!
Actress Kelly Marie Tran of “Star Wars: The Rise of Skywalker” lent her voice to this project.
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Cosmic Cycles: Earth as Art
Starting in 1972, nine Landsat satellites have orbited Earth, taking images of the surface. This unprecedented coverage has been tremendously useful to the scientific community, but it has also produced thousands of beautiful high-resolution images of the complex patterns of our world. From the fractal patterns of mountain ranges and river deltas to the precise geometry of agriculture, Landsat has rendered Earth as a work of art.
“Cosmic Cycles: A Space Symphony" is a groundbreaking collaboration between acclaimed composer Henry Dehlinger, NASA, and the National Philharmonic, featuring a unique fusion of music and video in seven multimedia works on the Sun, Earth, Moon, Planets, and Cosmos. This transformative project takes the audience on a captivating voyage through the universe, showcasing the beauty and power of the marriage between music and science.
Music credit: “Earth as Art" from Cosmic Cycles: A Space Symphony by Henry Dehlinger. Courtesy of the composer.
Credit: NASA's Goddard Space Flight Center
Producer: Ryan Fitzgibbons (KBRwyle)
Executive Producer: Wade Sisler (NASA/GSFC)
Music Composer: Henry Dehlinger (National Philharmonic)
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14319. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14319. For more information on NASA’s media guidelines, visit https://nasa.gov/multimedia/guidelines.
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0:00 Scorpion Reef, Gulf of Mexico
0:36 Phytoplankton Bloom, Baltic Sea
1:02 Florida Keys
1:31 Cape Cod, Massachusetts
2:00 Mississippi River Delta
2:30 Yukon-Kuskokwim Delta, Alaska
3:00 Lena River Delta, Russia
3:28 Appalachian Mountains, Pennsylvania
3:43 Icefields, British Columbia and Alberta
3:58 Rocky Mountains, Colorado
4:12 Poppy Fields, California
4:27 Artificial Salt Pans, Botswana
4:41 Flower Fields, Netherlands
4:56 Lake Ice, Northwest Territories, Canada
5:22 Sea of Okhotsk, Russia
5:36 Phytoplankton Bloom, North Sea
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Neptune’s Disappearing Clouds Linked to the Solar Cycle
Recent observations from the Hubble Space Telescope show that Neptune's clouds are almost completely disappearing!
Astronomers report that their continual monitoring of Neptune’s weather uncovered a link between its shifting cloud abundance and the 11-year solar cycle, where the Sun’s activity waxes and wanes under the driving force of its entangled magnetic field.
At present, the cloud coverage seen on Neptune is extremely low, with the exception of some clouds hovering over the giant planet’s south pole. A team of astronomers discovered that the abundance of clouds normally seen at the icy giant’s mid-latitudes started to fade in 2019.
For more information, visit https://nasa.gov/hubble.
Credit: NASA's Goddard Space Flight Center
Paul Morris: Lead Producer
Music Credit:
“Outer Rim” by Brandon Seliga [BMI] via Emperia Beta Publishing [BMI] and Universal Production Music
Image Credit:
Image of Lick Observatory, credit UC Santa Cruz
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14397. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14397. For more information on NASA’s media guidelines, visit https://www.nasa.gov/multimedia/guide....
See more Hubble videos on YouTube:
• Hubble Space Telescope
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If you liked this video, subscribe to the NASA Goddard YouTube channel:
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Follow NASA’s Goddard Space Flight Center
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· Flickr http://www.flickr.com/photos/gsfc
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133 Day's On The Sun
133 Days on the Sun
This video chronicles solar activity from Aug. 12 to Dec. 22, 2022, as captured by NASA’s Solar Dynamics Observatory (SDO). From its orbit in space around Earth, SDO has steadily imaged the Sun in 4K x 4K resolution for nearly 13 years. This information has enabled countless new discoveries about the workings of our closest star and how it influences the solar system.
With a triad of instruments, SDO captures an image of the Sun every 0.75 seconds. The Atmospheric Imaging Assembly (AIA) instrument alone captures images every 12 seconds at 10 different wavelengths of light. This 133-day time lapse showcases photos taken at a wavelength of 17.1 nanometers, which is an extreme-ultraviolet wavelength that shows the Sun’s outermost atmospheric layer: the corona. Compiling images taken 108 seconds apart, the movie condenses 133 days, or about four months, of solar observations into 59 minutes. The video shows bright active regions passing across the face of the Sun as it rotates. The Sun rotates approximately once every 27 days. The loops extending above the bright regions are magnetic fields that have trapped hot, glowing plasma. These bright regions are also the source of solar flares, which appear as bright flashes as magnetic fields snap together in a process called magnetic reconnection.
While SDO has kept an unblinking eye pointed toward the Sun, there have been a few moments it missed. Some of the dark frames in the video are caused by Earth or the Moon eclipsing SDO as they pass between the spacecraft and the Sun. Other blackouts are caused by instrumentation being down or data errors. SDO transmits 1.4 terabytes of data to the ground every day. The images where the Sun is off-center were observed when SDO was calibrating its instruments.
SDO and other NASA missions will continue to watch our Sun in the years to come, providing further insights about our place in space and information to keep our astronauts and assets safe.
The music is a continuous mix from Lars Leonhard’s “Geometric Shapes” album, courtesy of the artist.
Credit: NASA's Goddard Space Flight Center
Scott Wiessinger (PAO): Lead Producer
Tom Bridgman (SVS): Lead Visualizer
Scott Wiessinger (PAO): Editor
ctivity from Aug. 12 to Dec. 22, 2022, as captured by NASA’s Solar Dynamics Observatory (SDO). From its orbit in space around Earth, SDO has steadily imaged the Sun in 4K x 4K resolution for nearly 13 years. This information has enabled countless new discoveries about the workings of our closest star and how it influences the solar system.
With a triad of instruments, SDO captures an image of the Sun every 0.75 seconds. The Atmospheric Imaging Assembly (AIA) instrument alone captures images every 12 seconds at 10 different wavelengths of light. This 133-day time lapse showcases photos taken at a wavelength of 17.1 nanometers, which is an extreme-ultraviolet wavelength that shows the Sun’s outermost atmospheric layer: the corona. Compiling images taken 108 seconds apart, the movie condenses 133 days, or about four months, of solar observations into 59 minutes. The video shows bright active regions passing across the face of the Sun as it rotates. The Sun rotates approximately once every 27 days. The loops extending above the bright regions are magnetic fields that have trapped hot, glowing plasma. These bright regions are also the source of solar flares, which appear as bright flashes as magnetic fields snap together in a process called magnetic reconnection.
While SDO has kept an unblinking eye pointed toward the Sun, there have been a few moments it missed. Some of the dark frames in the video are caused by Earth or the Moon eclipsing SDO as they pass between the spacecraft and the Sun. Other blackouts are caused by instrumentation being down or data errors. SDO transmits 1.4 terabytes of data to the ground every day. The images where the Sun is off-center were observed when SDO was calibrating its instruments.
SDO and other NASA missions will continue to watch our Sun in the years to come, providing further insights about our place in space and information to keep our astronauts and assets safe.
The music is a continuous mix from Lars Leonhard’s “Geometric Shapes” album, courtesy of the artist.
Credit: NASA's Goddard Space Flight Center
Scott Wiessinger (PAO): Lead Producer
Tom Bridgman (SVS): Lead Visualizer
Scott Wiessinger (PAO): Editor
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