Monday, September 28, 2026

US-India Satellite Captures Time-lapse Video of Volcanic Eruption - Jet Propulsion Laboratory - EARTH

 

In this animation, frames of NISAR data from December 2025 to August 2026 show the spread of lava from the northern crater of Krasheninnikov, a volcano pair on Russia’s Kamchatka Peninsula. In the image, the lava field appears brighter in the foreground than the surrounding surfaces.
 Credit: NASA’s Scientific Visualization Studio

Like tendrils on a vine, lava spreads out from the northern crater of Krasheninnikov, a volcano pair on the Pacific coast of Russia’s Kamchatka Peninsula. On July 30, 2025, an 8.8-magnitude earthquake had struck in the nearby ocean, apparently jolting one of the two volcanoes awake. A few days later, for the first time in nearly five centuries, Krasheninnikov started erupting. Since that day, the northern volcano has been spilling a steady, eastward-flowing field of molten rock and debris, and the NASA-ISRO Synthetic Aperture Radar (NISAR) mission has been tracking the changes in the landscape.

From its vantage point 464 miles (747 kilometers) above the surface, NISAR captured an image of Krasheninnikov on Dec. 25, 2025, just as the Earth-observing satellite was finishing post-launch checks and becoming operational. Twice every 12 days since — once as the satellite passed south to north, and again as it passed north to south — NISAR has returned to the same spot in orbit and taken detailed radar snapshots.

Researchers put 17 of the frames captured through mid-August into sequence, forming a time-lapse video that shows lava filling a smaller, inner caldera, then overflowing into a wider crater before widening into a fan. The animation highlights how NISAR’s observations can monitor the development of natural hazards, both for science and potentially for emergency response.

Though remote, many of Kamchatka’s dozens of volcanoes are closely monitored with ground instruments because they erupt frequently. Not so with Krasheninnikov, which has been quiet since about the year 1550. That NISAR’s L-band radar observed it at all speaks to the satellite’s near-global coverage of the planet’s land surface at resolutions in the dozens of feet; that it captured the erupting volcano over time shows the precision and reliability of its measurements.

“The consistency is crucial. Twice every 12 days, acquiring in this high-resolution mode and in two observation directions, this shows the promise of NISAR to closely monitor natural hazards,” said Matthew Pritchard, a member of the NISAR science team and geophysicist at Cornell University who analyzed the data used to create the animation. 

Images from microwaves

The detail in a single NISAR image results from the use of synthetic aperture radar, or SAR, a specialized processing technique pioneered by NASA’s Jet Propulsion Laboratory in Southern California for Earth observation from space. As the satellite orbits, the radar sends thousands of microwave pulses per second to Earth and receives the return signals, each of which is effectively a snapshot in time that contains information about the properties and characteristics of the surface below.

The SAR processing combines the many images of the same area, sharpening the view just as a lens brings a blurry object into focus. Each pixel in the individual frames of the Krasheninnikov time-lapse represents about a 30-foot-by-30-foot (10-meter-by-10-meter) square on the surface — about half the size of a tennis court.

Lava shows up lighter in the images due to the way that microwaves reflect more brightly compared with the surrounding surface, which, depending on the time of year, is either snow or bare ground. In addition to the lava field growing to the east, the video shows another flow to the northwest, one that likely formed before NISAR captured the first NISAR image.

When Pritchard was doing his doctoral research on Kamchatka volcanoes more than 20 years ago, analysis-ready radar data was difficult to come by, both because satellites didn’t revisit as often and the resolution of the images was relatively low.

Now in addition to getting frequent and comprehensive coverage of virtually all the planet’s roughly 1,300 active, above-sea-level volcanoes, the images are sharp down to the several-meter scale and are easily accessible via the cloud. 

“We’re seeing volcanoes around the world that we’ve never really had eyes on like this before,” said Pritchard.

The NISAR satellite is the first free-flying space mission to feature two radar instruments: an L-band system and an S-band system. The systems are complementary due to their differing wavelengths. For example, the longer-wave L-band can pass through tree canopies, imaging the ground beneath. Meanwhile, depending on leaf sizes, S-band can collect observations of those canopies.

The data products from the NISAR mission’s L-band radar are available at the Alaska Satellite Facility Distributed Active Archive Center in Fairbanks, which hosts and distributes all NASA synthetic aperture radar data.

More about NISAR

Managed by Caltech for NASA, JPL leads the United States component of the project and provided the satellite’s L-band SAR and antenna reflector. The spacecraft bus and its S-band SAR were provided by ISRO (Indian Space Research Organisation).

The NISAR satellite is the first to carry two SAR instruments at different wavelengths, collecting data using the spacecraft’s giant drum-shaped reflector, which measures 39 feet (12 meters) wide, which is the largest radar antenna reflector NASA has sent into space.

To learn more about NISAR, visit: https://science.nasa.gov/mission/nisar/ 

Source: US-India Satellite Captures Time-lapse Video of Volcanic Eruption - NASA

Does Tutankhamen's tomb hold his stepmother Queen Nefertiti's remains? New study offers tantalizing clues - Other Sciences - Archaeology

When Tutankhamun's tomb was discovered over a century ago, it became an immediate worldwide sensation, revealing a wealth of treasures from ancient Egypt. In the decades that followed, the tomb was meticulously cleared, cataloged and studied, leading many to believe that KV 62, as it is officially known, had given up all its secrets. Yet long after its opening, the boy king's final resting place may still hold mysteries.

For decades, archaeologists have been puzzled by the tomb's unusually small size and awkward layout, which don't seem befitting of a royal pharaoh. This led to a theory that hidden chambers beyond the walls might hold the remains of Queen Nefertiti, whom many believe was Tutankhamun's stepmother.

With permission from Egypt's Supreme Council of Antiquities, a specialist team led by former Egyptian antiquities minister Dr. Mamdouh Eldamaty set out to test the theory.

Investigating the tomb

Researchers surveyed the tomb and surrounding hillside during the winter of 2023–24 using ground-penetrating radar, electrical resistivity tomography and microgravity measurements. Inside the tomb, team members placed noninvasive scanners directly against the decorated chamber walls, while others took readings across the surrounding rocky hillside. They also mapped the local geology and analyzed the tomb's painted walls.

What they found is detailed in a report titled "An Archaeo-Geophysical Review and Assessment of the Structure and Morphology of Tutankhamun's Tomb (KV 62) (The Burial of Nefertiti? IV)".

Scans of the west wall revealed vertical joints, stress cracks and a ceiling outline that suggest a blocked entrance. Beyond the north wall, radar detected what appears to be ancient walling material rather than solid bedrock. Outside the tomb, the microgravity survey picked up a series of rectangular underground anomalies roughly aligned with the tomb's north wall.


What lies beyond the walls?

Based on these clues, the researchers propose that Tutankhamun's tomb is part of a much larger hidden complex. They suggest a secret room or rooms may lie to the west, while a long corridor leads to five or six additional chambers, with the entire proposed complex extending roughly 25 to 30 meters (80 to 100 feet) to the north.

"The cumulative architectural, decorative, and geophysical indicators strongly suggest the existence of at least one further storage chamber beyond the Burial Chamber (J)'s west wall, and a royal funerary continuation beyond its north wall," wrote the research team.

However, they emphasize that their findings do not prove Nefertiti is buried there. Only direct physical investigation will be able to confirm what truly lies behind the walls. "With geophysical methods of charting anthropogenic structures now exhausted, the obvious next stage ... is direct investigation." 

Source: Does Tutankhamen's tomb hold his stepmother Queen Nefertiti's remains? New study offers tantalizing clues