New Research Reveals Dynamic, Regionally Unique Communities of Late Cretaceous Dinosaurs

The most renowned mass extinction in Earth’s history occurred approximately 66 million years ago. A swift decline in environmental conditions resulted in the extinction of around 75% of species, including the most famous non-avian dinosaurs, and the eventual restoration of terrestrial ecosystems. The ongoing debate focuses on whether dinosaurs vanished abruptly while they were still diverse and thriving or whether they experienced a prolonged decline by the end of the Cretaceous.



Flynn and colleagues analyzed Alamosaurus fossils found in northwestern New Mexico, revealing that these dinosaurs, while very different, are contemporaneous with those discovered further north in Wyoming and Montana. Image credit: Natalia Jagielska.

The geological formations of northwestern New Mexico hold a concealed chapter of Earth’s history.

Paleontologist Daniel Peppe from Baylor University and his team have uncovered indications of a flourishing dinosaur ecosystem in the Kirtland Formation’s Naashoibito Formation just prior to the asteroid impact.

Utilizing high-precision dating methods, they established that the fossils in these formations range from 66.4 to 66 million years old.

“The Naashoibito dinosaur coexisted with the renowned Hell Creek species of Montana and the Dakotas,” Dr. Peppe remarked.

“They were not in decline; rather, they constituted a vibrant, diverse community.”

The discoveries in New Mexico challenge previous assumptions.

Instead of being uniform and weakened, dinosaur communities across North America were unique and thriving in their respective regions.

Through ecological and biogeographic analysis, the researchers determined that dinosaurs in western North America thrived in distinct biozones shaped by regional temperature variations, rather than geographical barriers like mountains or rivers.

“Our recent study indicates that dinosaurs were not on the brink of mass extinction,” stated Andrew Flynn, a researcher at New Mexico State University.

“They were thriving, but the asteroid impact ultimately led to their demise.”

“This contradicts the long-established notion that a gradual decline in dinosaur diversity precipitated mass extinction, making them more susceptible to extinction.”

“The asteroid impact briefly terminated the age of dinosaurs, but the ecosystem they left laid the groundwork for what followed.”

“Within 300,000 years post-extinction, mammals began to diversify rapidly, branching into new diets, body sizes, and ecological roles.”

“The same temperature-driven patterns that influenced dinosaur communities carried into the Paleocene, illustrating how climate influenced the rebirth of life following catastrophic events.”

“The surviving mammals continued to exhibit distinct northern and southern biological regions.”

“Mammals from the north and south are markedly different from each other, diverging from other mass extinctions, which tend to appear more uniform.”

Of findings posted in today’s edition of Science.

_____

Andrew G. Flynn et al.. 2025. Late-surviving neo-Mexican dinosaurs reveal Cretaceous superlative diversity and locality. Science 390 (6771): 400-404; doi: 10.1126/science.adw3282

Source: www.sci.news

Hubble Space Telescope Seizes Stunning Images of Dynamic Spiral Galaxies

The NASA/ESA Hubble Space Telescope captured this image of UGC 11397, the Barred Spiral Galaxy, which houses a rapidly growing, supermassive black hole.



The Hubble image depicts UGC 11397, a barred spiral galaxy, located about 250 million light years away in the constellation Lyra. Image credits: NASA/ESA/Hubble/MJ Koss/AJ Barth.

Also referred to as IRAS 19019+3346, Leda 62725, or TC 872, UGC 11397 is situated in the constellation Lyra and is approximately 250 million light years distant.

The first documented mention of this spiral galaxy appeared in a galaxy catalogue compiled by Swiss astronomer Fritz Zwicky in 1966.

“At first glance, UGC 11397 seems like a typical spiral galaxy,” stated Hubble astronomers.

“It showcases two graceful spiral arms illuminated by stars, framed by dark, dense dust clouds.”

“What sets UGC 11397 apart from a standard spiral is the ultra-massive black hole at its core, which has a mass 174 million times that of the sun,” they noted.

“As the black hole ejects gas, dust, and even entire stars from its vicinity, this material heats up, creating a spectacular cosmic display.”

“Materials engulfed by black holes emit radiation ranging from gamma rays to radio waves, leading them to brighten and dim unexpectedly.”

“Nonetheless, in some galaxies like UGC 11397, thin dust clouds obscure much of this energetic activity from optical light observation.”

“Still, the rapidly growing black hole in UGC 11397 has been identified through its intense X-ray emissions.”

This discovery led astronomers to categorize it as a Type 2 Seyfert Galaxy, a classification for active galaxies whose central cores are obscured by dust and gas formations.

“Utilizing Hubble, we will examine hundreds of galaxies that host ultra-massive black holes similar to UGC 11397,” the researchers stated.

“Hubble’s observations aid us in measuring nearby supermassive black holes, understand their growth early in the universe’s history, and explore star formation in extreme conditions at the galaxy’s center.”

Source: www.sci.news

Webb Captures Dynamic Infrared Auroras on Jupiter

Jovian auroras shine hundreds of times brighter than those visible from Earth, according to a team of astronomers led by Dr. Jonathan Nichols at the University of Leicester.

These observations of Jupiter’s aurora were captured on December 25, 2023 by Webb’s near-infrared camera (NIRCAM). Image credit: NASA / ESA / CSA / STSCI / RICARDO HUESO, UPV / IMKE DE PATER, UC BERKELEY / THIERRY FOUCHET, OBSERVATORY OF PARIS / LE FLETCHER, JOSEPH DEPASQUALE, STSCI/J. NICHOLS, UNIVERSITY OF LEICESTER/M. ZAMANI, ESA & WEBB.

When high-energy particles enter the planet’s atmosphere near its magnetic poles, they collide with gas atoms, creating the auroras.

Jupiter’s auroras are not only massive in scale but also exhibit energy levels hundreds of times greater than those seen on Earth.

These auroras are primarily triggered by solar storms, where charged particles entering the atmosphere excite gas particles, resulting in vibrant red, green, and purple hues.

Additionally, Jupiter has a unique source of auroral activity—its strong magnetic field captures charged particles from its surroundings.

This includes not only those from the solar wind but also particles ejected from the volcanic moon Io.

The eruptions from Io’s volcanoes release particles that escape both the moon’s and Jupiter’s gravitational pull.

Solar storms also discharge vast amounts of charged particles towards Jupiter.

Jupiter’s immense magnetic fields accelerate these charged particles to extraordinary speeds.

When these high-velocity particles collide with the planet’s atmosphere, they excite the gas and produce radiant displays.

https://www.youtube.com/watch?v=if0vpfergju

Thanks to the advanced capabilities of the NASA/ESA/CSA James Webb Space Telescope, new insights into Jovian auroras can be gained.

The telescope’s sensitivity enables astronomers to use faster shutter speeds to capture the rapidly evolving features of the auroras.

This latest data was collected using Webb’s near-infrared camera (NIRCAM) on Christmas Day 2023.

“What a Christmas gift; it truly astonished me!” exclaimed Dr. Nichols.

“We aimed to observe how quickly the aurora transformed, hoping to see beautiful fluctuations within about an hour.”

“Instead, we witnessed the entire aurora region illuminating the sky in a spectacular display.

Astronomers noted fluctuations in the effects caused by trihydrogen ions, known as H.3+, which varied more than previously assumed.

These observations help scientists unravel how Jupiter’s upper atmosphere undergoes heating and cooling.

Additionally, several unknown phenomena were identified in the data.

“What made these observations particularly intriguing was that the NASA/ESA Hubble Space Telescope was capturing images simultaneously in ultraviolet light,” Dr. Nichols commented.

“Strangely, the brightest light observed by Webb seemed to have no corresponding feature in Hubble’s images. This left me puzzled.”

“To produce the brightness observed in both Webb and Hubble, we would require an improbable mix of a substantial quantity of very low-energy particles impacting the atmosphere.

study Published in the journal Nature Communications.

____

JD Nichols et al. 2025. The dynamic infrared aurora of Jupiter. Nature Communications 16, 3907; doi:10.1038/s41467-025-58984-z

Source: www.sci.news

Introducing Galaxy Squad: Key Laptop Trends for 2024 including Dynamic Displays and AI Optimization

The promise of remote work in today’s world is enticing – being able to work from anywhere, whether it’s a coffee shop in Manhattan or a beach in Bali, thanks to the power of your laptop. But in reality, our laptops may be outdated, slow, and incapable of keeping up with the demands of modern technology. Now is the perfect time to consider upgrading to the new Samsung Galaxy Book4 series, built to meet the challenges of 2024.

Whether you’re crunching numbers, editing videos, or unwinding with games, the evolving trends in laptop technology are worth noting.

Thinner, faster, quieter – Today’s laptops are impressively thin yet powerful, with the Samsung Galaxy Book4 Pro and Ultra series leading the way with slim profiles and robust performance, including dedicated graphics cards for gaming on the go.

Incredible screen – The Galaxy Book4 Pro and Ultra models boast cutting-edge 16-inch dynamic AMOLED 2X touchscreens that offer vibrant colors, crisp visuals, and adaptive display technology to optimize viewing in any environment.

Flexible form – Modern laptops like the Galaxy Book4 360 series offer convertible designs that allow for seamless transitions from laptop to tablet mode, complete with touch-enabled screens and stylus support for note-taking and sketching.

AI revolution – Intel Core Ultra processors powering the Galaxy Book4 series feature dedicated neural processing units for handling AI workloads efficiently, enabling users to leverage AI-driven features like Microsoft’s Copilot for enhanced productivity.

All about the ecosystem – Today’s laptops are part of a larger digital ecosystem, with seamless integration between devices like the Galaxy Book4 series and Samsung Galaxy smartphones, offering mobile connectivity, data sharing, and enhanced productivity tools for users on the go.

Ready to embark on your digital nomad journey with the Samsung Galaxy Book4 series? samsung.com/uk/galaxy-book

© Intel Corporation. Intel, the Intel logo, and other Intel marks are trademarks of Intel Corporation or its subsidiaries. Other names and brands may be claimed as the property of others.

AI Features may require the purchase, subscription, or activation of additional software by the software or platform provider and may have specific configuration or compatibility requirements. intel.com/performance index. Your results may vary.

1 Adobe subscription required.
2 Requires a Galaxy smartphone with One UI 1.0 or later.
3 A Microsoft account is required.
4 A Samsung account is required.
Features available 5 March.

Source: www.theguardian.com