Webb Identifies Four Unique Dust Shells Surrounding Two Wolf-Rayet Stars

By utilizing data from the NASA/ESA/CSA James Webb Space Telescope along with ESO’s Very Large Telescope (VLT), two separate teams of astronomers have captured mid-infrared images of a system featuring four intricate spirals of dust encircling a pair of aging Wolf-Rayet stars located in a system known as Apep (2XMM J160050.7-514245).



Webb’s mid-infrared images reveal four coiled dust shells surrounding two Wolf-Rayet stars known as Apep. Image credits: NASA / ESA / CSA / STScI / California Institute of Technology Yeahuo Han / Macquarie University Ryan White / Alyssa Pagan, STScI.

Wolf-Rayet stars represent a rare class of massive binary stars where the universe’s earliest carbon is formed.

There are estimated to be only around 1,000 of these stars in the Milky Way galaxy, which contains hundreds of billions of stars in total.

Among the multiple Wolf-Rayet binaries observed so far, the Apep system stands out as the sole example of having two such Wolf-Rayet stars within our galaxy.

In a recent study, astronomer Ryan White from Macquarie University and his team set out to refine the orbital characteristics of the Wolf-Rayet stars in the Apep system.

They integrated precise ring position measurements from the Webb images with the shell’s expansion rate obtained over eight years of VLT observations.

“This is a unique system with a very extended orbital period,” White mentioned.

“The next longest orbit for a dusty Wolf-Rayet binary is roughly 30 years, while most orbits tend to span between 2 and 10 years.”

One of the team’s papers was published concurrently in the Astrophysical Journal alongside another study led by astronomer Yinuo Han from the California Institute of Technology.

“Observing the new Webb data felt like stepping into a dark room and flipping on a light switch. Everything became visible,” Dr. Han remarked.

“Dust is abundant throughout the Webb image, and telescope observations indicate that much of it is fragmenting into repeating and predictable structures.”

Webb’s observations yielded unprecedented images. It produced a clear mid-infrared image revealing a system of four swirling spirals of dust, each expanding in a consistent pattern. Ground-based telescopes had only identified one shell prior to Webb’s discoveries.

By merging Webb imagery with several years of VLT data, they refined the orbital frequency of the star pairs to every 190 years.

Within this remarkably lengthy orbit, the star approaches closely for 25 years, enabling dust formation.

Additionally, Webb’s observations confirmed the existence of three stars that are gravitationally bound to each other in this system.

The dust expelled by the two Wolf-Rayet stars is being cleaved by a third star, a massive supergiant, which creates holes in the dust cloud emanating from its expansive orbit.

“Dr. Webb has provided us with the ‘smoking gun’ evidence to confirm that a third star is gravitationally linked to this system,” Dr. Han noted.

Researchers were aware of this third star since VLT observed its brightest inner shell in 2018, but Webb’s findings helped refine the geometric model and reinforced the connection.

“We unraveled several mysteries with Webb,” Dr. Han added.

“The lingering mystery remains the precise distance from Earth to the star, which will necessitate further observations.”

_____

Ryan MT White et al. 2025. Snake eating its own tail: Dust destruction of the Apep impact wind nebula. APJ 994, 121; doi: 10.3847/1538-4357/adfbe1

Han Yinuo et al. 2025. JWST reveals the formation and evolution of dust in APEP, a binary star with colliding winds. APJ 994, 122; doi: 10.3847/1538-4357/ae12e5

Source: www.sci.news

Research Shows Moss Can Endure 9 Months in Space

Mosses are believed to have evolved from ancestral plants that transitioned from aquatic environments to terrestrial habitats approximately 450 million years ago.

This organism is known for its remarkable hardiness, thriving in diverse locations, from the frigid Antarctic tundra to the lofty peaks of the Himalayas, as well as in volcanic lava fields and various aquatic settings.

Fujita expressed his admiration for its extraordinary resilience.

“It got me thinking: Could this resilient little plant endure the harsh conditions of space?” he remarked.

His research team focused on a specific type of moss known as Physcomitrium patent. They conducted experiments in a laboratory simulating a space environment, exposing the moss to extreme temperatures, vacuum conditions, and elevated levels of ultraviolet radiation.

They concluded that the moss’ sporophyte, which contains the encapsulated spores that act as reproductive structures, stands the best chance of survival in space due to its ability to endure high levels of ultraviolet light. The spores were able to germinate after enduring scorching conditions of 131 degrees Fahrenheit for a month and frigid temperatures of minus 320 degrees Fahrenheit for over a week.

In March 2022, researchers dispatched hundreds of moss sporophytes to the International Space Station using a cargo spacecraft from Northrop Grumman. Astronauts attached the sporophyte samples to the station’s exterior and left them exposed for 283 days.

The moss samples were subsequently returned to Earth on a SpaceX cargo mission in January 2023.

The team discovered that over 80% of the spores survived their nine-month journey outside the space station, with nearly 90% successfully re-germinating in their Earth-based laboratory.

Source: www.nbcnews.com

Envisioning a Future Where Smart Glasses Eliminate “AI Slop”

“Wearing non-smart glasses created a reality that was not augmented at all…”

Ekaterina Goncharova/Getty Images

By the mid-2020s, the world became inundated with “AI slop.” Various forms of content—images, videos, music, emails, advertisements, speeches, and TV shows—were generated by artificial intelligence and often felt unoriginal and unengaging. While some experiences occasionally offered amusement, many were dull and soulless, sometimes leading to harmful misinterpretations. Interactions with others raised doubts—was the person on the other end of the call genuine? Many were repulsed and eager to escape from this perplexing landscape.

There was no “Butler’s Crusade,” a fictional revolt against the thinking machines. The book title references Samuel Butler’s insightful 1863 letter discussing machine evolution, titled “Darwin in the Machines.” Ironically, the solution emerged through innovative applications of AI.

One tech firm unveiled a series of smart glasses, featuring an augmented reality (AR) display equipped with built-in cameras, microphones, and headphones. By 2028, engineers from the Reclaim Reality Foundation adapted this tech for smart glasses, utilizing bespoke AI to eliminate any AI-generated content. Wearing non-smart glasses functioned as a form of negative AR, presenting an unfiltered reality.

Roaming the streets with DumbGlasses, later dubbed X-ray specs due to their ability to see beyond the surface, felt akin to subscribing to ad-free media. These glasses stripped away AI-created banners and seamlessly inserted natural scenery, ensuring that every conversation or song was crafted using classic analog methods. Users embraced X-ray specs as a means to unwind, declutter their minds, and break free from the deluge of AI. Many proudly displayed their status with T-shirts and badges touting slogans like “AI Vegan,” “Real or Nothing,” and “Slop Free Zone.”

As we moved into the 2030s, electronic contact lenses and tiny ear implants emerged that could perform similar functions.

The online domain posed a different challenge. There, escaping the grip of AI and relentless algorithmic profiling proved far more difficult.


Engineers took that technology into smart glasses and utilized custom AI to eliminate any AI-generated content.

One method allowed users to access search engines without activating the AI summaries. In the 2020s, one such option was: startpage.com. Some clever hacks employed expletives in search queries, circumventing AI-generated summaries. Nonetheless, even with these workarounds, evading AI profiling and targeting on social media platforms remained nearly impossible. Given the overwhelming dominance of major tech companies over social media, navigation, and the online realm, disengaging was far easier said than done. Yet, few were willing to abandon everything the Internet revolution had gifted us; they yearned for a digital universe to explore and rich online experiences.

The solution manifested as a new kind of network. Beyond the standard internet and the dark web, accessible only via specific browsers and passcodes, emerged veriweb (from veritas, Latin for truth). This network featured content entirely free from AI influence. Collaborating with Reclaim Reality, artists, musicians, and writers devised an infallible system, akin to blockchain used for verifying cryptocurrency transactions, ensuring that every piece of content had verifiable human origins. Veriweb, or the transparent web, became the trusted haven for reliable information and journalism, as users could trace the origin of their content. Wikipedia, which struggled with AI-generated material throughout the 2020s, transitioned to Veriweb in 2029. Traditional news entities followed suit, eager to assert their credibility in a post-AI landscape. Moreover, veriweb ensured that users remained unmonitored, unprofiled, and untouched by AI algorithms.

As millions flocked to this platform, humanity rediscovered connections and creativity. While much AI utilization persisted in personal tasks—like medical diagnoses—the intellectual stagnation that plagued society since the 2020s began to dissipate as individuals more actively engaged in their actions rather than leaving them to machines.

People discovered that navigating the vast digital world without algorithmic guidance diminished their sense of curated and personalized experiences. Additionally, the extensive collection of sensitive data by tech giants and the colossal revenues derived from targeted exploitation of that data became distant memories, evoking little sorrow among the populace.

Rowan Hooper, editor of New Scientist podcast and author of How to Spend $1 Trillion: 10 Global Problems We Can Actually Solve. Follow him on Bluesky @rowwhoop.bsky.social

Topics:

  • artificial intelligence/
  • technology

Source: www.newscientist.com

Common Types of Inflammatory Bowel Disease Linked to Harmful Bacteria

Ulcerative colitis is characterized by inflammation of the colon and rectum lining.

BSIP SA/Alamy

Toxins from bacteria in contaminated water can destroy immune cells in the colon’s lining. This implies that individuals whose intestines host these bacteria are significantly more likely to develop ulcerative colitis.

This conclusion is derived from a series of studies undertaken with both humans and animals by Shwena Chan and colleagues at Nanjing University, China. If validated, these findings could pave the way for new treatment options.

Ulcerative colitis is one of the primary types of inflammatory bowel disease (IBD), marked by inflammation of the colon and rectum lining. Symptoms typically fluctuate between periods of remission and flare-ups, sometimes necessitating the removal of the colon in severe cases.

The exact cause of ulcerative colitis remains unclear, although it is often regarded as an autoimmune disorder influenced by both genetic and environmental factors. Chan’s team theorized that immune cells called macrophages might be integral to the condition.

Macrophages are found throughout various body tissues, performing the dual roles of clearing debris and bacteria while regulating local immune responses. They can signal additional immune cell recruitment and initiate inflammation but are equally important in mitigating it.

Researchers discovered that the density of resident macrophage cells was notably reduced in colon tissue from patients with ulcerative colitis compared to those without the condition. Further experimentation demonstrated that depleting macrophages in mice increased their susceptibility to colitis, suggesting that losing macrophage protection leads to colon damage and inflammation.

But what accounts for the lower macrophage levels in ulcerative colitis patients? By analyzing fecal samples, the research team identified a toxin named aerolysin, which significantly harms macrophages while sparing other intestinal cells.

Aerolysin is secreted by several strains of bacteria belonging to the genus Aeromonas, frequently found in freshwater and brackish environments. The strains responsible for producing aerolysin are referred to as MTB (macrophage-toxic bacteria).

In experiments where mice were deliberately infected with MTB, they exhibited greater vulnerability to colitis. Conversely, even after removing the aerolysin gene from the bacteria or neutralizing the toxin with antibodies, the mice did not show increased susceptibilities to the condition.

Ultimately, the research team tested for Aeromonas in stool samples, discovering its presence in 72% of the 79 patients with ulcerative colitis, versus only 12% among 480 individuals without the condition. This test, however, could not confirm if these bacteria were indeed MTB or if they produced aerolysin.

The findings offer a nuanced perspective. Not every case of ulcerative colitis is linked to MTB, and some individuals can carry MTB without developing the disease.

“We cannot assert that MTB is the exclusive cause of ulcerative colitis,” Zhang states. “Ongoing MTB infection can create a hypersensitive environment in the colon, yet not everyone infected will develop colitis.”

“Environmental and genetic factors certainly influence the emergence of colitis,” she adds.

According to Zhang, there are at least three potential approaches for new treatment development. One involves creating drugs to neutralize the toxin; another would focus on vaccines targeting the toxin or the bacteria producing it; while a third approach seeks to eradicate toxin-producing bacteria via phage therapy, which utilizes viruses that selectively kill specific bacteria.

“The leading theory posits that MTB toxin depletes specialized macrophages in the intestinal lining, undermining intestinal immunity,” explains Dr. Martin Kriegel from the University Hospital of Münster, Germany.

He has observed that when the team eradicated all intestinal bacteria in mice and subsequently infected them with MTB, their susceptibility to colitis diminished. This observation indicates that other yet-to-be-identified bacterial species could also play a role.

“Nonetheless, this may represent a crucial, overlooked factor in the multi-step development of ulcerative colitis, especially in China,” Kriegel suggests.

Zhang and her research group intend to conduct more extensive epidemiological studies to substantiate the association between MTB and ulcerative colitis. If MTB infection is confirmed and becomes increasingly prevalent, it may elucidate the rising incidence of IBD.

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Source: www.newscientist.com

The Growing Size of Cars: A Challenge for Us and the Planet

Living in the UK, you might have observed a rise in the number of sport utility vehicles (SUVs) and large vehicles on our roads. These vehicles represented 63% of new car sales in the UK last year, a stark increase from just 12% in 2010.

On a global scale, this figure hovers around 48% and shows no signs of decreasing. This trend is concerning, as larger vehicles mean greater risks. My research focuses on the intersection of transportation and health, and recently, I collaborated on a study featured in BMJ. We believe regional, national, and international strategies are essential to limit the sale of these vehicles.

The principal health hazards associated with cars include road risks, pollution, and the tendency for people to choose driving over walking or cycling, which are more beneficial for health. Heavier cars negatively impact all these factors.

Intuitively, the risk of injury from a large vehicle is more pronounced. Their front ends are tall and blunt compared to standard cars; this is problematic for cyclists and pedestrians. Last year, I was involved in a review analyzing studies on the interactions between SUVs and vulnerable road users. The findings indicated that adults struck by SUVs face a 44% higher mortality risk than those hit by standard cars. The review also estimates that in the U.S., about 10% of pedestrian and cyclist casualties could be avoided by substituting SUVs with smaller vehicles—translating to roughly 1,700 preventable deaths or serious injuries annually.

Additionally, cars are becoming wider, a phenomenon dubbed “car spreading.” European new cars now grow, on average, by 0.5 cm each year. With limited road space devoted to cars, there’s increasingly less for cyclists and pedestrians. Encouraging more people to walk or bike would offer significant health benefits. Larger cars not only diminish these advantages but also contribute to urban congestion.

The larger size of these vehicles exacerbates air pollution issues. While the shift toward electric vehicles is promising for reducing emissions, it’s crucial to note that even electric SUVs create particulate pollution from tires and brakes, a major contributor to urban air quality concerns. Heavier vehicles produce more tire and brake wear, meaning electric SUVs may not offer the same air quality benefits as smaller electric cars.

So, what can we do to mitigate the proliferation of these large, hazardous, and polluting SUVs? My colleagues and I propose several strategies. Many cities now implement clean air zones—London’s Ultra Low Emission Zone is one example. While not specifically targeting vehicle size, such zones urge people to consider pollution from older, larger cars. Recently, the Cardiff council decided to charge extra for residential parking permits for SUV owners, joining cities like Paris and several in Germany and France that have raised parking costs for larger vehicles.

Beyond parking fees, governments might rethink car taxes to incentivize smaller vehicle purchases. Imposing higher taxes on heavier cars would align with societal costs related to road danger and pollution.

While some individuals may have legitimate needs for larger vehicles, with SUVs representing nearly half of all new car sales, we must recognize the health risks they pose. For improved road safety and cleaner air, buyers need to weigh these factors and governments must adjust regulations to reflect the dangers and environmental impacts of these vehicles.

Anthony Laverty is a student at Imperial College London School of Public Health.

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Source: www.newscientist.com

Who Tops the List for the Funniest Dad Jokes? You Might Be Surprised!

Feedback is a popular segment in New Scientist that keeps an eye on the latest science and technology news. If you have items you think might interest our readers, please email us at feedback@newscientist.com.

It’s no laughing matter

Feedback celebrated a birthday in the past year. Feedback Junior gifted me a card that read, “My ambition in life is to be as interesting as you think I am.”

Despite this, we continue to share dad jokes because the kids’ reactions are priceless. Hence, we were intrigued to discover that two psychologists, Paul Sylvia and Meriel Barnett, have a scholarly interest in dad jokes. They authored an entire paper on the subject.

The title is “What’s Brown and Sticky? A Peek into the Inescapable Comedic Mystery of Dad Humor, Using a Few Machine Learning Models, Hundreds of Humans, and Tens of Thousands of Dad Jokes.” The summary begins, “Of course, it’s a stick,” in case you weren’t ready for it.

The authors compiled over 32,000 jokes from Reddit’s r/dadjoke community. This dataset is available alongside the paper, so Feedback naturally downloaded it all. It features gems like, “How do you know a ship’s age? Let’s look at the berth certificate.”

However, this isn’t merely an opportunity for puns—it’s serious research. The psychologists gathered data on joke popularity and showed some to volunteers, allowing us to ponder an essential question: “Who finds these outlandish jokes funny?” Panel members answered questions about their personalities, political views, and more. They discovered that people labeled as “culturally traditional”—defined as “more educated” or “more religious”—tended to appreciate these jokes.

A critical factor identified as “the most intellectually profound question in the survey” was whether individuals considered themselves cat people or dog people. Both groups found the jokes funnier if they liked both types of pets compared to those who didn’t like either. The researchers speculate: “I wonder what people who don’t like kittens and puppies find funny.”

Ultimately, they found that gender and parenthood influenced how people perceived these jokes. They concluded, “In these difficult and uncertain times, where distrust of expertise and reason is widespread, perhaps it’s reassuring to know that science has found that dads find dad jokes funnier.”

Unite by urinating

While Feedback was a bit late, we missed the June release of Joan Bichard and Gail Lamster’s book Comprehensive Public Restroom Design. Thankfully, reader Brian Refine-Smith brought it to our attention.

The premise of this book is straightforward. Public restrooms need to serve everyone, yet often they do not. “This book provides an important overview of the design of public toilets in the UK and emphasizes the urgent need to reassess the accessibility of these essential spaces and the surrounding culture,” states the publisher’s website.

Your feedback will be taken into account. One of our relatives has autism; the shrill sound of a hand dryer can trigger sensory overload for them, along with the harsh fluorescent lights common in public restrooms. However, the hardback edition retails for £70, which seems rather excessive.

Nonetheless, I want to follow Brian’s lead and highlight the book’s subtitle. You might anticipate something dull and verbose like “How to Design Public Conveniences to Be Accessible to Everyone, Regardless of Gender, Ethnicity, Disability, or Neurodiversity.” In reality, it’s titled “Wee the People.”

The end is near

When you make a bold claim and face criticism, there are several ways to respond. Perhaps your critic raises valid points, prompting you to add caveats or soften your statement. Alternatively, you might feel misunderstood and clarify your position.

However, that’s not what happened. Last month (October 18th), Feedback relayed the sobering news that humanity is on a course for extinction by 2339. This prediction stems from a paper by demographers David Swanson and Jeff Teiman, who confidently extrapolated over 300 years into the future based on declining birth rates from 2019 to 2024. Feedback noted that this might be somewhat unfounded.

To my surprise, Swanson reached out to me. “Thank you for recognizing the seriousness of our article on the extinction of humanity,” he wrote, erasing our suspicions that the whole thing was a prank.

Mr. Swanson also sent me version 2 of his paper, which features significant updates, presumably incorporating 2025 data. As a result, human extinction has been delayed by nearly a century. Instead of 2339, we’re now looking at 2415 for humanity’s disappearance. That was a relief.

However, the more crucial changes are encapsulated in the paper’s new title, Probabilistic Prediction of Human Extinction Based on Region. The researchers have now broken down their predictions by continent. “Asia will be the first region to face extinction (in 2280), followed by Europe in 2295, the Americas in 2300, Africa in 2360, and lastly Oceania in 2415,” they state. So, buy beachfront property on Easter Island, folks.

When considering Feedback, I can’t help but envision a third version of the paper—one that predicts the exact island in Polynesia where the last humans will gather.

Have a story for feedback?

You can send your articles to Feedback at feedback@newscientist.com. Please include your home address. This week’s and past Feedback can be found on our website.

Source: www.newscientist.com

Mouse ‘Doula’ Aids Pregnant Friend in Childbirth

Adult mice employed their paws and mouths to assist newborns stuck in the birth canal of pregnant females.

Violet J. Ivan/New York University Grossman School of Medicine

Mice have been observed aiding pregnant females during difficult births, particularly among seasoned mothers. This represents a significant discovery as it marks the first documented instance of such behavior in non-primate animals, broadening our understanding of caregiving behaviors across species.

While humans are recognized as the only animals that consistently assist each other during childbirth due to the challenging nature of the process—characterized by larger-than-average infant head sizes navigating a narrow birth canal—other primates, like black-nosed monkeys and bonobos, have shown instances of mutual aid during births, albeit rarely.

Research conducted by Robert Froemke and colleagues at NYU Langone Health in New York City stumbled upon this behavior while studying the brain activity of mouse subjects during birthing events for a different purpose. They noticed that fellow mice in the cage seemed to assist the birthing mice during their delivery processes.

To delve deeper, scientists genetically modified pregnant mice to lack receptors for oxytocin, a hormone that triggers uterine contractions essential for childbirth. Without these contractions, the mother mouse might struggle to move and face fatal consequences. Consequently, survival for both the mother and her pups becomes more precarious.

In a structured experiment, 10 modified mice were caged individually and each paired with a previously birthing female. A separate group of seven pregnant mice without oxytocin receptors were isolated in their cages.

During delivery, when the modified pregnant mouse could not move, the experienced female stepped in. “She acts like a mini midwife, using her mouth and paws to carefully extract the pups,” shared Dr. Froemke at the Society for Neuroscience conference in San Diego, California. The assisting mouse even broke open the sac surrounding the young, ensuring they could breathe.

A remarkable nine out of ten pregnant mice paired with these midwives successfully birthed, with approximately 90 percent of their pups surviving. By contrast, only one from the isolated group succeeded in giving birth, with all pups not surviving. “Mammals are social creatures, and the primary reason is due to mutual assistance during such vulnerable moments,” Froemke noted. “Even rats experience challenges during childbirth and rearing; their social structures provide support, reflecting traits akin to humans.”

To investigate if the presence of experienced mice was crucial, researchers placed 14 pregnant mice, lacking oxytocin receptors, in a different environment. Seven were coupled with male mice, while four were with females untouched by childbirth and three with females lacking oxytocin receptors. In addition to their role in uterine contractions, these receptors are known to be critical for social interactions.

Assistance from other mice significantly enhanced survival rates

Violet J. Ivan/New York University Grossman School of Medicine

Results revealed that nearly 60 percent of pregnant mice paired with male companions and half of those with non-mother females endured the birthing process. Notably, these non-mother mice did not assist in pulling the pups out; instead, the male mouse mounted the female, exerting pressure to facilitate the birth, while the non-mother female groomed and applied belly pressure similarly. Differences in approaches among groups remain unclear. Of the group with non-oxytocin receptor females, merely one mouse survived.

The pups did not survive due to the unbroken fluid-filled sacs, indicating the necessity for maternal experience for successful outcomes. “I essentially play the midwife role,” Froemke remarked.

The findings bolster the notion that caregiving behaviors may be more prevalent in the animal kingdom than previously acknowledged. For instance, research has shown that rats are capable of administering first aid to their unconscious peers. These new findings suggest that the birthing and nurturing of offspring are pivotal elements shaping animal social dynamics and relationships, according to Froemke.

“Parental care stands as one of the most significant social interactions,” says Bianca Jones Marlin from Columbia University, underscoring the necessity of support during these critical moments.

Froemke speculates that similar midwife-like behaviors might occur among wild rodents and other animals. “Childbirth represents one of the most vulnerable periods in an animal’s life,” he observes. “Due to their need to evade predators, many animals exhibit concealment behaviors, explaining why field researchers see such assistance less frequently in species outside of humans.”

topic:

  • pregnancy and childbirth/
  • animal behavior

Source: www.newscientist.com

Moss Spores Thrive and Germinate After 283 Days in Space Exposure

This moss sprouted from spores that were exposed to space for nine months

Tomomichi Fujita

On March 4, 2022, astronauts placed 20,000 moss spores outside the International Space Station, where they endured extreme space conditions for 283 days. Following their retrieval, the spores were brought back to Earth in a SpaceX capsule for scientists to attempt germination. Remarkably, these attempts proved successful.

Mosses, one of the oldest land plants, are renowned for thriving in some of the planet’s harshest environments, such as Antarctica, volcanic terrains, and arid deserts. Tomomichi Fujita was part of the research team from Hokkaido University in Japan that conducted this groundbreaking experiment.

“We were curious whether these spores could withstand conditions in one of the most extreme environments imaginable: outer space,” he remarks.

Numerous studies have simulated the survival of various mosses and plants under extraterrestrial conditions, particularly those anticipated on Mars. However, this marks the first instance where researchers examined whether a specific type of moss can endure the actual conditions of space. The spores originated from the species Physcomitrium Patent.

A control group of spores that remained on Earth exhibited a 97 percent germination rate, comparable to another group of spores that were shielded from the damaging ultraviolet rays while still in space.

Astoundingly, over 80 percent of the spores that faced the totality of space—its vacuum, extreme temperatures, microgravity, ultraviolet light, and cosmic radiation—survived and grew into healthy plants. Researchers predict that some spores could remain viable in space for as long as 15 years based on these experimental results.

“Opening the sample felt akin to unlocking a biological time capsule: life that has endured the void of space and returned to full functionality,” Fujita expresses.

Prior to the experiment, the researchers had already assessed other living components of the moss, such as its filaments, under simulated conditions. They discovered that other life stages of this moss succumb to environmental factors like UV radiation, extreme temperature fluctuations, high salinity, and dehydration within days to weeks.

However, the spores appeared to withstand all these adversities. This is particularly impressive given that the spores outside the space station faced simultaneous attacks, while the Earth-based tests evaluated only one stressor at a time.

Fujita noted that the multilayered spore wall encasing the reproductive tissue acts as a “passive shield against harsh spatial conditions.”

He likens the spores to residing within their own spaceship, suggesting this might be an adaptive feature they developed to deal with the extreme environmental pressures present during the early stages of terrestrial life, hundreds of millions of years ago.

“Spores are, in essence, compact life capsules that lie dormant but are ready to reactivate when conditions are favorable,” he states. “It feels like evolution has given them their own survival pods designed to travel across time and space.”

Fujita cautioned that this research does not confirm the presence of extraterrestrial life, but it does bolster the concept that once life appears, it can be incredibly resilient. “The ability of terrestrial life to thrive under space-like conditions suggests that the fundamental building blocks of life might be more abundant and persistent than we typically assume.”

David Eldridge and fellow researchers from the University of New South Wales in Sydney emphasize that the ultimate test is not merely whether the spores can germinate on Earth, but if they can thrive in space.

“The critical point is to evaluate the growth rates of these taxa in space and determine if they can reproduce,” he concludes.

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Source: www.newscientist.com

Quantum 2.0 Review: An Ambitious and Entertaining Exploration of Quantum Physics, Though Slightly Exaggerated

Quantum 2.0 explores the boundaries of our understanding of the quantum realm

Richard Keil/Science Photo Library

Quantum 2.0
Paul Davies Penguin (UK, released November 27th); University of Chicago Press (US, released in February 2026)

In his book Quantum 2.0: The Past, Present, and Future of Quantum Physics, physicist Paul Davies concludes with a beautiful reflection: “To grasp the quantum world is to catch a glimpse of the grandeur and elegance of the physical universe and our role within it.”

This enchanting and romantic viewpoint resonates throughout the text. Quantum 2.0 presents a bold attempt to elucidate the fringes of the quantum universe, with Davies as an informed and passionate storyteller. However, his enthusiasm occasionally edges toward exaggeration, with his remarkable writing skills often compensating where more direct quotations might have been fitting.

Davies’ book is quite accessible, despite its ambitious aim of covering nearly every facet of quantum physics. He addresses quantum technologies in computing, communications, and sensing, touches on quantum biology and cosmology, and manages to explore various competing interpretations of quantum theory.

There are no equations in Quantum 2.0, and while some technical diagrams and schematics are included, they do not detract from the reading experience.

As a writer on quantum physics myself, I appreciate how clearly Davies articulates the experiments and protocols involved in quantum information processing and encryption—a challenging task to convey.

As a navigator through the quantum realm, Davies serves as a delightful and amiable companion. His genuine curiosity and excitement are palpable. Yet, this exuberance doesn’t always align with the rigor that contemporary quantum physics research demands. In my view, most quantum-related excitement should come with cautionary notes.


Readers unfamiliar with quantum research might confuse speculative claims with the truth.

For instance, within the first 100 pages, Davies asserts that quantum computers could enhance climate modeling—an assertion not widely accepted among computer scientists and mathematicians, especially concerning near-future machines.

In another section regarding quantum sensors, he mentions manufacturers proposing their utility in evaluating conditions like epilepsy, schizophrenia, and autism. I anticipated a justification or insights from experts outside the sensor industry, but the ensuing discussion was lacking in depth and critical analysis.

Additionally, the example Davies provides to demonstrate quantum computers’ advantages over classical ones dates back several years.

Less experienced readers in quantum research may find some of Davies’s speculative statements misleading, although the book remains an engaging read. This is underscored by bold assertions such as, “Whoever masters Quantum 2.0 will certainly control the world.”

To clarify, I don’t dispute Davies’ sentiments. Many gadgets that influence our lives currently depend on quantum physics, and the future may usher in even more quantized technology. I support this notion.

Emerging fields, such as quantum biology and better integration of quantum and cosmological theories, also seem poised for significant breakthroughs. Just ask the numerous researchers diligently working toward a theory of quantum gravity.

However, conveying this future to newcomers necessitates a blend of precision and subtlety in storytelling and writing.

Otherwise, the outcome may lead to disappointment.

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Source: www.newscientist.com

Y Chromosome Loss: A Possible Factor in Lung Cancer Progression and Outcomes

Insights into the impact of Y chromosome loss on lung cancer treatment outcomes may guide therapeutic choices.

Dakuku/Getty Images

Research indicates that men diagnosed with the predominant type of lung cancer are more likely to lose the Y chromosome in their cells. This phenomenon has both pros and cons; while it can prevent the immune system from combating tumors, it also enhances the effectiveness of standard anti-cancer therapies.

As men grow older, their cells frequently undergo mutations, leading to the loss of the Y chromosome. In immune cells, this loss is believed to correlate with heart disease and decreased life expectancy. Additionally, there is growing evidence that cancer cells that lose the Y chromosome may influence symptom progression, with bladder cancer being the most thoroughly researched case.

The loss of the Y chromosome is a binary occurrence—it either happens or it doesn’t. However, the health implications seem to depend significantly on the proportion of specific cells that lack the Y chromosome.

The recent study initiated by Dawn DeMeo and her team at Brigham and Women’s Hospital in Boston, Massachusetts, investigated how Y-chromosome genes are expressed in a publicly available dataset of lung adenocarcinoma samples. Lung adenocarcinoma, the most common form of lung cancer, originates from the mucus-producing cells lining the airways. Enhanced understanding of the relationship between Y loss and various health issues has motivated researchers to delve deeper into gene expression studies, according to DeMeo.

The team discovered that cancer cells, in contrast to healthy lung and immune cells, often lack the Y chromosome. This occurrence is independent of whether the tissue donor is a smoker—despite smoking being linked to lung cancer and Y chromosome loss.

The loss of Y chromosomes appears to accumulate over time. “Certain groups demonstrate a higher rate of Y chromosome loss across a greater number of cells, and we observe significant Y chromosome loss in a large fraction of tumors,” stated John Quackenbush from Harvard University.

To comprehend the reasons behind this accumulation, researchers examined other genetic alterations in Y-negative cells. They found that the loss of a common set of antigens produced by cancer cells correlates with diminished expression levels. These antigens usually notify immune T cells that cancer cells are abnormal and should be targeted. The decreased expression allows Y-negative cancer cells to proliferate unchecked.

“This implies that as tumor cells lose their Y chromosome, they become increasingly adept at evading immune surveillance, suggesting a selection of tumor cells that escape immune detection,” Quackenbush explained. T cell counts were consistently lower in samples with Y loss compared to those retaining the Y chromosome.

Positive findings emerged when researchers analyzed data from 832 lung adenocarcinoma patients treated with the immune checkpoint inhibitor pembrolizumab, a medication designed to restore the body’s immune response against tumors by reversing T-cell suppression. The analysis confirmed that Y chromosome loss was linked to improved treatment outcomes.

“Patients experiencing LOY [loss of Y] are more responsive to checkpoint inhibitors,” noted Dan Theodorescu from the University of Arizona, who found similar results in bladder cancer, establishing validation against an entirely different dataset.

However, while loss of the Y chromosome is linked to shorter life expectancies for men compared to women, existing data suggests it does not impact survival in patients with lung adenocarcinoma. Further research is needed to explore how the effects of such mutations influence survival across different cancer types, according to Theodorescu. As our understanding advances, he believes that loss of Y could eventually serve as a biomarker for clinical decision-making.

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Source: www.newscientist.com

Daily Pills May Offer a Substitute for Weight Loss Injections

Pills may provide a more convenient method for taking weight-loss medications

H_Ko/Shutterstock

An oral pill could soon serve as an alternative to Wegovy and Ozempic injections after research demonstrated that it significantly reduces weight and enhances blood sugar levels in individuals with obesity and type 2 diabetes.

Created by the pharmaceutical giant Eli Lilly, Orforglipron mimics the action of semaglutide, the key ingredient found in Wigovy and Ozempic, by imitating a hormone known as GLP-1.

In a previous trial, researchers discovered that individuals who were obese but did not have type 2 diabetes could lose an average of approximately 11 percent of their body weight over 72 weeks while using Orforglipron. Although this is less than the 15% typically observed with similar treatments, many find the convenience of taking a pill more appealing. With semaglutide injections, the preference for oral medication becomes clear, as noted by Deborah Horn from the University of Texas.

To assess its effectiveness for those with obesity and type 2 diabetes, Horn and her colleagues enlisted over 1,600 individuals from ten countries, including India, Australia, China, Germany, Brazil, and the United States.

Approximately 900 participants were assigned to receive varying daily doses of orforglipron—low, medium, or high—while the remainder received placebo pills alongside lifestyle guidance.

After 72 weeks, individuals in the high-dose group lost nearly 10 percent on average, with 67 percent of that group achieving over 5 percent weight loss. The middle and low-dose groups recorded around 7 percent and 5 percent reductions, respectively, while the placebo group had less than a 3 percent decrease.

This study reaffirms that Orforglipron results in less weight loss compared to injectable GLP-1 medications; however, it may still enhance health and quality of life. Stefan Trapp from University College London, who did not participate in the study, remarked, “Even a modest 5% weight loss generally leads to clear benefits, such as increased exercise capacity, lifestyle changes, and reduced risk of other illnesses.”

Moreover, participants receiving high doses experienced an average drop of nearly 2 percent in blood sugar levels, with approximately 75 percent reaching levels typically aimed for diabetics, Horn shared. Conversely, those on lower doses saw a mere 0.1% reduction, while the placebo group exhibited no significant change.

Roughly 10% of the individuals taking high and medium doses had to discontinue use due to side effects like nausea, vomiting, and diarrhea—nearly double the occurrence seen in the low and placebo groups. Nonetheless, most participants deemed the side effects manageable, according to Horn. “The side effects were standard for other GLP-1 injectable medications,” she explained.

Horn mentioned that Eli Lilly anticipates the FDA will approve the drug for obesity and type 2 diabetes by early next year. As a physician, she hopes for approval of all three doses to provide patients with options to optimize their health while minimizing side effects.

Orforglipron does not necessitate refrigeration or syringes, which may lower manufacturing, storage, and distribution costs compared to injectable GLP-1 drugs. This, along with the elimination of injection-related discomfort, could enhance access to GLP-1 weight-loss drugs, which are currently costly and hard to obtain in many low- and middle-income nations, Trapp noted.

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Source: www.newscientist.com

Ancient Mayan Ruins Reveal 3,000-Year-Old Cosmic Map

A monumental ancient structure unearthed in Mexico could uncover how the early Maya civilization perceived the universe. Among them, new research indicates that the 3,000-year-old site known as Aguada Fénix served as a cosmogram, representing a geometric map of the cosmos.

Archaeologists initially discovered a large cross-shaped cavity (termed a cross hole) concealed within dense jungle in 2020. Upon closer inspection, they discovered that this was merely one of numerous interconnected holes linked by canals. The cumulative volume of these cross holes exceeds 3.8 million cubic meters, equivalent to nearly one and a half pyramids of Giza or over 1,500 Olympic-sized swimming pools.

Researchers from the University of Arizona utilized laser technology to identify Aguada Fénix from aerial views, situated in the current state of Tabasco on the Gulf Coast.

They now assert that the earliest examples of these findings in Mesoamerica—colored pigments discovered in pits—align with the four cardinal directions: north, south, east, and west. Specifically, vibrant blue azurite represents north, yellow ocher marks south, green malachite signifies east, and pearl-like shells denote west.

Mineral pigments found arranged to correspond with cardinal directions. Researchers suspect that the western deposits may originally included red pigments that have faded over time. – Photo credit: Takeshi Inomata/University of Arizona

According to Independent Maya Expert Dr. James A. Doyle, “The cross shape and color symbolism embedded in the architecture physically embody the concept of how the Earth’s planes are organized and directed.” The BBC Science Focus article also highlights that “the dams and canals underscore the significance of water both practically and symbolically, which is mirrored in the blue and green pigments, shells, and greenstone products.”

Crucially, the new study published in Scientific Progress posits that the construction was a collective effort by a non-hierarchical community, as there is no evidence linking dwellings, palaces, or a central ruling class to late Maya architecture.

Given the size of the structures (Doyle describes them as “some of the largest ever constructed in this area”), it is believed that at least 1,000 individuals would have collaborated over several years to carve the rock and create the cosmogram.

These individuals were likely not coerced by an elite class but were part of an egalitarian society that sought a communal space for stargazing and sharing astronomical knowledge. These vast areas probably also served for trade, social interactions, and religious ceremonies.

Researchers believe this jade artifact depicts a woman in the act of giving birth. – Photo credit: Takeshi Inomata/University of Arizona

Archaeologists have uncovered not only pigments but also jade carvings, primarily reflecting natural experiences rather than deities or leaders. These carvings largely depict animals, although some seem to portray women in childbirth.

Doyle emphasizes that there is still much to uncover about social equality at Aguada Fénix, particularly concerning the enigmatic jade woman.

“What if she represented a strong leader, akin to figures seen in many later societies across Mesoamerica, the Caribbean, and the central Andes?” he queried.

“As excavations progress and our understanding of Aguada Fénix’s builders deepens, we will gain a clearer insight into the disparities in wealth and influence.”

Read more:

Source: www.sciencefocus.com

New Research Reveals Black Cumin’s Anti-Obesity Benefits

Traditionally, black cumin seeds have been esteemed for their health benefits. A recent study examined their potential in alleviating symptoms related to obesity.



Ahmed et al. suggest that black cumin seeds (Nigella sativa) could be a promising natural remedy for obesity-related issues. Image credit: Andre Holz / CC BY-SA 3.0.

Nigella sativa, commonly known as black cumin, is a flowering plant in the Ranunculaceae family, widely used in traditional medicine across South Asia, North Africa, and the Mediterranean region.

Its healing properties are acknowledged in ancient medical systems like Unani, Ayurveda, and Tiv.

Rich in bioactive compounds such as alkaloids, flavonoids, and essential oils, black cumin seed and its oil demonstrate vast pharmacological potential.

Their diverse physicochemical properties make them valuable in both culinary and medicinal applications.

Studies with cell cultures and animals have shown the therapeutic benefits of black cumin and its active component thymoquinone, including antibacterial, anti-inflammatory, antioxidant, antidiabetic, antihypertensive, antitumor, immunomodulatory, and antiobesity effects.

To delve into these effects, Dr. Akiko Kojima Yuasa and colleagues from Osaka Metropolitan University conducted cell-based experiments and human clinical trials.

In the clinical trials, participants who ingested 5g of black cumin seed powder (around 1 tablespoon) daily for 8 weeks exhibited notable decreases in blood triglyceride levels, LDL (“bad”) cholesterol, and total cholesterol. Moreover, HDL (“good”) cholesterol levels saw an increase.

This improved blood lipid profile is linked to a reduced risk of heart disease and premature mortality.

The research team also performed cell experiments to clarify the mechanisms at play.

They discovered that black cumin seed extract inhibits adipogenesis (the formation and maturation of fat cells) by preventing lipid droplet accumulation and the differentiation process.

Dr. Yuasa Kojima remarked, “This study strongly indicates that black cumin seeds serve as a functional food in the prevention of obesity and lifestyle-related diseases.”

“We were thrilled to effectively demonstrate the significant blood lipid-lowering effects of black cumin in our human clinical trials.”

“We aspire to conduct long-term, extensive clinical trials to further investigate the effects of black cumin on metabolism.”

“We are particularly keen on exploring insulin resistance in diabetes and its influence on inflammatory markers.”

This study was published in the journal Food Science and Nutrition.

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Shamima Ahmed et al. 2025. Black Cumin Seed (Nigella sativa) 3T3-L1 exhibits anti-adipogenic effects in cellular models and hypolipidemic properties in humans. Food Science and Nutrition 13 (9): e70888; doi: 10.1002/fsn3.70888

Source: www.sci.news

TGO Offers Enhanced Insights on 3I/ATLAS’s Journey through the Solar System

Thanks to data gathered by the Color Stereo Surface Imaging System (CaSSIS) on board ESA’s Trace Gas Orbiter (TGO) spacecraft orbiting Mars, scientists have enhanced the predicted location of interstellar comet 3I/ATLAS by a factor of 10.



This image of interstellar comet 3I/ATLAS was captured on October 3, 2025, by the CaSSIS instrument aboard ESA’s Trace Gas Orbiter. Image credit: ESA/TGO/CaSSIS.

3I/ATLAS was discovered on July 1, 2025, by the NASA-funded ATLAS (Asteroid Terrestrial Impact Last Alert System) telescope located in Rio Hurtado, Chile.

Prior to September, researchers depended on Earth-based telescopes to track the positions and orbits of interstellar comets.

From October 1 to 7, TGO concentrated on 3I/ATLAS from its orbit around Mars.

The comet came relatively close to Mars, achieving a distance of roughly 29 million km at its closest approach on October 3.

The Mars rover observed 3I/ATLAS from approximately 10 times closer than Earth telescopes and from a fresh vantage point.

By triangulating data from TGO/CaSSIS and Earth-based observations, scientists significantly improved the accuracy of the comet’s predicted trajectory.

Initial expectations were for a modest improvement, but the findings revealed an impressive tenfold increase in precision.

“Utilizing data from the Mars rover made it challenging to refine the interstellar comet’s path through space,” stated TGO team members.

“The CaSSIS instrument is crafted to provide high-resolution observations of the nearby Martian surface.”

“This time, the camera was directed high above Mars, capturing the minute, distant 3I/ATLAS streaking across the star-filled sky.”

Planetary Defense Team Astronomer from ESA’s Near Earth Object Coordination Center was already adept at determining asteroid and comet orbits, necessitating consideration of the spacecraft’s unique position.

“Generally, orbital observations are conducted from fixed terrestrial observatories, but occasionally from spacecraft in near-Earth orbit, such as the NASA/ESA Hubble Space Telescope or the NASA/ESA/CSA James Webb Space Telescope,” the researchers noted.

“Astronomers excel at factoring in the positions of celestial bodies to ascertain their future positions, known as ephemerides.”

“In this instance, the accuracy of the 3I/ATLAS ephemeris—especially its predictions—relied on accounting for the precise location of TGO, including Mars and its rapid orbit around it.”

“Achieving this required a collaborative effort from various ESA teams and partners, ranging from flight mechanics to science and instrumentation.”

To attain the highest possible accuracy, we needed to address challenges and nuances typically overlooked and minimize margins as much as we could.

Source: www.sci.news

Kissing Likely Evolved in Our Common Ancestor with Great Apes 21 Million Years Ago

Kissing is common among most living great apes and likely was practiced by Neanderthals, having evolved in the ancestors of these groups between 21.5 million and 16.9 million years ago, according to a study led by researchers from Oxford University.

Neanderthal. Image credit: Gemini AI.

Kissing can be observed in various animal species, yet it poses an evolutionary enigma. While it carries significant risks, such as disease transmission, it lacks clear reproductive or survival advantages.

Until now, the evolutionary background of kissing has received limited attention, despite its cultural and emotional importance across numerous human societies.

In this recent study, Dr. Matilda Brindle and her team from the University of Oxford undertook the first investigation into the evolutionary history of kissing, utilizing a cross-species perspective based on primate family trees.

The findings indicated that kissing is an ancient characteristic of great apes, having developed in their ancestors between 21.5 and 16.9 million years ago.

This behavior has persisted through evolution and is still evident in most great apes.

The researchers also concluded that Neanderthals, distant relatives of modern humans, likely engaged in kissing as well.

This evidence, alongside earlier studies showing that humans and Neanderthals exchanged oral microbes (through saliva) and genetic material (via interbreeding), strongly implies that kissing occurred between the two species.

Dr. Brindle stated: “This marks the first exploration of kissing from an evolutionary standpoint.”

“Our results contribute to an expanding body of research that illuminates the incredible variety of sexual behaviors found among our primate relatives.”

To carry out the analysis, scientists needed to define what constitutes a kiss.

This task was challenging due to the numerous mouth-to-mouth interactions resembling kisses.

Given their investigation spanned a diversity of species, the definition had to be suitable for a wide range of animals.

Consequently, they defined kissing as non-aggressive mouth-to-mouth contact that does not involve food transfer.

After establishing this definition, the researchers concentrated on groups of monkeys and apes that evolved in Africa, Europe, and Asia, gathering data from the literature where kissing has been documented in modern primates.

Among these are chimpanzees, bonobos, and orangutans, all of which have displayed kissing behavior.

Following that, they conducted a phylogenetic analysis, treating kissing as a “trait” to map onto the primate family tree.

Using a statistical method known as Bayesian modeling, they simulated various evolutionary scenarios along the tree’s branches and calculated the chances that different ancestors also kissed.

The model ran 10 million simulations, producing robust statistical estimates.

Professor Stuart West from the University of Oxford noted: “Integrating evolutionary biology with behavioral data enables us to draw informed conclusions about non-fossilized traits like kissing.”

“This paves the way for studying the social behaviors of both extant and extinct species.”

While the researchers caution that current data is limited, particularly beyond great apes, this study sets a framework for future inquiries and offers primatologists a consistent method for documenting kissing behaviors in non-human animals.

“Though kissing may seem like a universal act, it’s only documented in 46% of human cultures,” remarked Dr. Katherine Talbot from the Florida Institute of Technology.

“Social customs and situations differ vastly among societies, prompting the question of whether kissing is an evolved behavior or a cultural construct.”

“This research represents a first step in addressing that question.”

This is part of a study published this week in the journal Evolution and Human Behavior.

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Matilda Brindle et al. 2025. A comparative approach to the evolution of kissing. Evolution and Human Behavior in press. doi: 10.1016/j.evolhumbehav.2025.106788

Source: www.sci.news

Mars Reconnaissance Orbiter Captures Close-Up Image of Interstellar Comet 3I/ATLAS

Exciting new images from High-Resolution Image Science Experiment onboard NASA’s Mars Reconnaissance Orbiter will enable astronomers to refine their estimates regarding the size of 3I/ATLAS, the third known interstellar object that has passed through our solar system.



This image of 3I/ATLAS was captured by the HiRISE camera aboard NASA’s Mars Reconnaissance Orbiter on October 2, 2025. Credit: NASA / JPL-Caltech / University of Arizona.

On October 2, 2025, the Mars Reconnaissance Orbiter (MRO) observed 3I/ATLAS from approximately 30 million km (19 million miles) away.

The MRO team utilized the High-Resolution Imaging Science Experiment (HiRISE), which typically focuses on the Martian surface.

By maneuvering, the spacecraft can direct its camera toward other celestial objects. This method was previously employed in 2014 when HiRISE collaborated with MAVEN to examine the comet Siding Spring.

“Observations of interstellar objects are still infrequent, so each time we learn something new,” noted Dr. Shane Byrne, HiRISE principal investigator and researcher at the University of Arizona.

“We were fortunate that 3I/ATLAS came close to Mars.”

Captured at a resolution of about 30 km (19 miles) per pixel, 3I/ATLAS appears as a pixelated white sphere in the HiRISE images.

“This sphere is a cloud of dust and ice, referred to as a coma, that the comet emits as it travels past Mars,” the researchers added.

Further analysis of HiRISE images could assist scientists in establishing an upper limit on the size of a comet’s core, composed of ice and dust.

The images might also uncover properties of particles known as comas within the comet’s atmosphere.

Ongoing scrutiny of the images may reveal nuclear fragments and gas jets expelled as comets disintegrate over time.

“One of MRO’s greatest contributions to NASA’s Mars research is its ability to observe surface phenomena that only HiRISE can detect,” explained Dr. Leslie Tampali, MRO’s project scientist and a research scientist at NASA’s Jet Propulsion Laboratory.

“This opportunity allows us to study passing space objects.”

“Thanks to NASA’s versatile fleet of spacecraft throughout our solar system, we can continue to observe this dynamic entity from unique perspectives,” stated Georgia Tech researcher Professor James Ray, a HiRISE co-investigator.

“All three prior interstellar objects exhibit significant differences from one another and from typical Solar System comets, making every new observation incredibly valuable.”

“Being able to observe a visitor from another star system is extraordinary in itself,” remarked Dr. Tomás Díaz de la Rubia, senior vice president for research and partnerships at the University of Arizona.

“Doing so from a University of Arizona-led instrument orbiting Mars adds to its remarkable nature.”

“This moment highlights the ingenuity of our scientists and the lasting impact of this university’s leadership in space exploration.”

“HiRISE exemplifies how discovery tools can benefit both science and the public interest.”

Source: www.sci.news

Trump Administration to Repeal Certain Protections Under the Endangered Species Act

On Wednesday, the Trump administration took steps to reduce the scope of the Endangered Species Act, reinstating modifications from the president’s first term that had previously been blocked by a federal court.

The proposed modifications include removing the U.S. Fish and Wildlife Service’s “blanket rule,” which automatically safeguards plants and animals once they are deemed endangered. Instead, government agencies will be required to formulate specific regulations for each species, a process that may be time-consuming.

This announcement from the administration follows ongoing pressure from Republican lawmakers and industries such as oil, gas, mining, and agriculture, who have called for reforms to the Endangered Species Act of 1973. Critics argue that the law is too broadly applied and hampers economic growth.

Environmental advocates, however, have cautioned that these changes could significantly delay conservation efforts for species like the monarch butterfly, Florida manatee, California spotted owl, and North American wolverine.

Rebecca Riley, managing director of the Natural Resources Defense Council, stated, “They’re attempting to revert to the time when they first weakened the law. We are opposing this, and the Biden administration is working on reversing many of the adverse changes made.”

Scientists and government agencies have indicated that extinction rates are accelerating. Species populations globally are declining due to habitat loss and various pressures. Earlier proposals in President Trump’s second term sought to revise the definition of “harm.” These regulations, grounded in the Endangered Species Act, could allow logging projects on national forests and public lands to bypass species protections.

Interior Secretary Doug Burgum commented that the administration aims to restore the original purpose of the Endangered Species Act while also considering “the livelihoods of Americans who rely on our lands and resources.”

“These adjustments eliminate years of legal uncertainty and governmental overreach, thereby providing clarity for states, tribes, landowners, and businesses, and ensuring conservation efforts are based on sound science and common sense,” Burgum stated.

A further proposed change requires authorities to consider potential economic repercussions when identifying critical habitats necessary for a species’ survival, an action that environmental groups claim the 1973 law explicitly prohibits.

This approach could potentially result in species being classified as endangered while allowing ongoing practices that continue to endanger their survival.

Noah Greenwald, co-director of the Center for Biological Diversity’s Endangered Species Program, remarked, “What the Trump administration is attempting to do is quantify costs. If you’re aiming to protect the spotted owl, they’re trying to factor in how much that protection would cost. Historically, such costs haven’t influenced decisions regarding critical habitat protections.”

An example involving the Southwest sawfish highlights the possible repercussions of these proposals. The lizard population in Arizona’s Mule Mountains is rapidly declining due to rising temperatures, driving the reptiles towards the highest mountain peaks, pushing them closer to extinction.

A petition filed on Wednesday seeks protection for the lizard and the designation of critical habitat. Advocates believe that an economic impact assessment could hinder timely protections. The primary threat to this spiny dragon population is climate change, which could complicate critical habitat designations further.

“We feel this species should be classified as endangered. Frankly, we are somewhat astonished that this species is not already extinct,” stated John Wiens, a professor of ecology and evolutionary biology at the University of Arizona, who co-authored the petition.

Earlier this March, the Department of the Interior faced legal action from the Real Estate Environmental Research Center (PERC) and the Rocky Mountain Elk Foundation over the comprehensive protection rule. Both organizations claimed the rule was illegal and would hinder states and landowners from facilitating species recovery efforts.

Designating species as “threatened” under the comprehensive rule allows them to automatically receive the same protections as those categorized as “endangered,” which are more stringent. This could lead landowners to become apathetic toward the survival of endangered species, as regulations may remain unchanged even if efforts are made to reclassify endangered species to “threatened” status.

PERC Vice President Jonathan Wood characterized Wednesday’s proposal as a “necessary adjustment” following the Biden administration’s actions.

“This reform acknowledges the illegality of the omnibus rule and re-centers recovery efforts within the Endangered Species Act,” Wood expressed.

During its initial term, the Trump administration also took action on the northern spotted owl and gray wolf.

The decision regarding the spotted owl was reversed in 2021 after it was found that political appointees had utilized flawed scientific data to justify opening millions of acres of forest on the West Coast to logging. Protections for wolves, on the other hand, remained in effect across most of the United States, only to be reinstated by federal courts in 2022.

The Endangered Species Act, established 50 years ago, continues to have widespread support. According to a recent poll, approximately 84% of Americans endorse the protections that the law affords.

Source: www.nbcnews.com

NASA Unveils Stunning New Images of Interstellar Comet 3I/ATLAS

NASA unveiled new images of an interstellar comet on Wednesday, marking it as the third confirmed visitor from elsewhere in the galaxy. The visuals depict the comet as a luminous point encircled by a halo of gas and dust.

In the eagerly awaited photograph, the comet, designated 3I/ATLAS, mainly appears as an illuminated spot, though its tail can be seen as a faint elongated streak in some frames.

Interstellar comet 3I/ATLAS (highlighted in the center) as captured by NASA’s Lucy spacecraft. This image was formed by combining multiple photos taken on September 16, as the comet approached Mars.
NASA / Goddard / SwRI / JHU-APL

First identified in July, comet 3I/ATLAS has generated significant excitement among scientists and astronomy enthusiasts. The fascination arises from the unique chance to observe interstellar objects at such proximity.

The latest images were captured by an array of NASA spacecraft while the enigmatic comet circled through the inner solar system from late September to mid-October. The release was delayed due to a government shutdown that interrupted operations at NASA and other federal institutions.

The NASA missions responsible for these new images include the PUNCH satellite, which observes the Sun, the Solar Heliosphere Observatory, the MAVEN mission studying Mars’ atmosphere, and the Perseverance rover, currently on Mars’ surface.

Traveling at 130,000 miles per hour, the comet 3I/ATLAS was depicted in a series of colorized stacked visuals from September 11 to 25 using the STEREO-A (Solar Terrestrial Relations Observatory) visible-light camera.
NASA / Lowell Observatory / Zhang Qicheng

Prior to 3I/ATLAS, the only confirmed interstellar objects to have entered our solar system were the cigar-shaped ‘Oumuamua in 2017 and comet 2I/Borisov in 2019.

The arrival of 3I/ATLAS in our cosmic vicinity has sparked wild speculations about the possibility of it being extraterrestrial technology or an alien spacecraft, although no scientific backing supports these ideas. NASA officials stated in a press conference on Wednesday that all current observations align with known comet characteristics.

“We certainly haven’t detected any technosignatures or anything that would suggest it is anything but a comet,” remarked Nicki Fox, associate administrator for NASA’s Science Mission Directorate.

Nonetheless, the comet’s interstellar roots indicate it possesses intriguing attributes that could yield new insights regarding star systems beyond our own, according to Fox.

“That difference is particularly fascinating to us,” she stated. “It may have existed before our solar system was formed. That’s pretty exciting.”

In the forthcoming weeks, scientists will have enhanced opportunities to study 3I/ATLAS and further analyze its appearance, speed, chemical makeup, and potential origins.

“This is a new scientific chance and an opportunity to delve into the composition and history of other solar systems,” expressed Tom Statler, NASA’s lead scientist for small solar system bodies. “We’re just beginning to understand these types of objects and determining the right questions to pose about them.”

Comet 3I/ATLAS was documented by the PUNCH satellite in low Earth orbit from September 28 to October 10, when it was between 231 to 235 million miles away.
NASA/Southwest Research Institute

However, tracing the comet’s origin remains challenging, Statler noted.

3I/ATLAS came closest to the Sun at the end of October and is currently continuing its path through the inner solar system. It has been so near to the Sun that it has not been visible to terrestrial telescopes recently, but NASA anticipates it will become visible again post-December.

On December 19, 3I/ATLAS is expected to make a close pass by Earth. Although it poses no threat, NASA states that the comet will remain about 170 million miles away during this encounter.

Statler indicated that the James Webb Space Telescope will observe the comet in December, while ground-based telescopes like the W.M. Keck Observatory in Hawaii are also scheduled to capture images of the comet in the future.

An image depicting interstellar comet 3I/ATLAS as it approached Mars, captured by the European Space Agency’s ExoMars Trace Gas Orbiter.
European Space Agency

The photos released by NASA on Wednesday join a growing collection acquired by various spacecraft across the solar system. In early October, the European Space Agency shared 3I/ATLAS images taken by the ExoMars Trace Gas Orbiter, which showed a bright point moving through the vastness of space.

This spacecraft, co-managed by the ESA and the Russian Federal Space Agency, detected a comet approaching near Mars at that time, about 18.6 million miles away according to ESA.

NASA continues to analyze additional data gathered by the fleet of spacecraft since early October.

“There’s much more to come,” Statler remarked. “Not all data has been transmitted through NASA’s Deep Space Network yet, and there are numerous observations still planned.”

Source: www.nbcnews.com

Climate Change is Impacting the Deepest Reaches of the Arctic Ocean

Deep Waters of the Arctic Ocean Are Warming

Mozgova/Shutterstock

Warm waters from the Atlantic near Greenland are now heating the deep layers of the Arctic Ocean, an area once considered relatively insulated from climate change.

The Arctic Ocean has seen a reduction of about 40% in its sea ice cover over the past 40 years, primarily due to the impact of atmospheric warming on sea levels. Researchers at the Ocean University of China evaluated the latest data collected by icebreakers to assess the temperature increase of the ocean floor.

In the Eurasian Basin, which is one of the ocean’s two principal sections, temperatures at depths ranging from 1500 meters to 2600 meters have increased by 0.074 degrees Celsius since 1990.

While this temperature rise may seem minor, it equates to nearly 500 trillion megajoules of energy. Such energy could potentially melt up to one-third of the least extensive sea ice area.

“The deep ocean is more dynamic than previously assumed,” states Chen Xianyao, one of the research team members. “We suspected that the deep ocean was warming, but not at this pace.”


An underwater ridge separating Greenland and Siberia divides the Arctic Ocean into two basins. The Amerasian Basin is primarily cut off from the Pacific Ocean by the shallow Bering Strait. However, warm Atlantic waters can still flow north along the Scandinavian coast into the upper Eurasian Basin through an extension of the Atlantic Meridional Overturning Circulation (AMOC). During winter, when seawater freezes, the salts are released, resulting in denser water that sinks and drags some warmer Atlantic water down with it.

Geothermal heat from the Earth warms the deep waters of the Eurasian Basin.

Previously, these warming trends were balanced by cold water flowing down from a neighboring basin east of Greenland. Yet, as the Greenland ice sheet continues to melt, more freshwater is entering the Greenland Basin. This influx has slowed the downward movement of cold, salty water, raising the temperature of deep waters in the Greenland Basin from -1.1°C to -0.7°C—a significantly rapid increase. Consequently, the influx of cold Greenland waters is no longer counteracting the heat from geothermal sources or the warm Atlantic waters sinking into the Arctic.

“The rising temperatures in the Greenland Basin are now reaching the Arctic,” says Son Louise, another research team member.

This research uncovers new warming mechanisms deep within the Arctic Ocean, “indicating a broader trend of global warming,” according to James McWilliams from UCLA.

The ongoing warming might eventually contribute to the melting of both sea ice and permafrost found on the ocean floor, which contains ice-like structures known as clathrates. If disturbed, these can release methane into the atmosphere, a phenomenon believed to have contributed to the Permian mass extinction.

Topics:

Source: www.newscientist.com

Repurposing a Mosquito’s Proboscis as a Slim Nozzle for 3D Printing

Mosquito proboscis repurposed as a nozzle for 3D printing

Changhong Cao et al. 2025

Separated mosquito proboscises can be transformed into ultra-thin nozzles for 3D printing, offering potential for generating replacement tissues and organs suitable for transplantation.

Cao Changhong and his team at McGill University in Montreal, Canada, pioneered this method, termed 3D necroprinting, because they couldn’t find a nozzle adequately thin for creating extremely fine structures. The narrowest commercial nozzle available was 35 micrometers in inner diameter, with a price tag of 60 pounds (approximately $80).

They explored methods like glass drawing, but those nozzles were also costly and very brittle.

“This led us to consider alternatives,” says Cao. “If nature can give us what we need affordably, why should we create it ourselves?”

The research team tasked graduate students, including Justin Puma, to inspect everything from scorpion stingers to snake fangs to identify natural organs fit for the purpose. Ultimately, they discovered the mosquito proboscis, particularly the tougher variant found in female Egyptian mosquitoes (Aedes aegypti). They can now print structures as thin as 20 micrometers.

Cao remarked that a skilled operator could produce six nozzles per hour from the mosquito mouthparts, each costing under $1, making scalability straightforward. These natural nozzles can be fitted onto current 3D printers and are surprisingly durable given their organic origin. Approximately 30% may fail after two weeks, but they can be preserved in the freezer for up to a year.

The research team tested their technology using a bioink called Pluronic F-127, enabling the crafting of biological tissue scaffolds, including blood vessels, and providing a possible route for developing substitute organs.

There are numerous other instances where small biological components have been utilized in machines, such as moth antennas employed in scent-detecting drones. Deceased spiders have been harnessed as mechanical grippers.

Christian Griffith, along with collaborators from Swansea University in the UK, noted that this study exemplifies how human engineers often struggle to keep pace with the tools developed by nature.

“Mosquitoes boast millions of years of evolution, and we’re striving to catch up,” he explains. “They possess a distinct advantage in this respect.”

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Source: www.newscientist.com

Surprising Formation Found in the Kuiper Belt of Our Solar System

Artwork depicting the Kuiper belt

Artist Perspectives on the Kuiper Belt

ESO/M.Kornmesser

The Kuiper Belt, the outer disk of icy rock in our solar system, has been found to exhibit more intricate structure than previously understood. In 2011, researchers unveiled a cluster of objects with similar orbits, referred to as the Kuiper Belt’s “kernel.” Recently, another group has identified an even more tightly groupedset of objects, termed the “inner kernel.”

The original kernel was identified through visual analysis of the orbits of 189 Kuiper Belt Objects (KBOs). This cluster is positioned roughly 44 astronomical units from the Sun, with one astronomical unit representing the distance between the Sun and Earth. Since the kernel’s discovery, no additional structures in the Kuiper Belt have been found.

That is, until Amir Shirazi and his team at Princeton University undertook the meticulous effort of refining orbital data from 1,650 KBOs. They utilized clustering and structure-searching algorithms to analyze this data. By training the algorithm to identify kernels, they discovered that whenever the algorithm pinpointed a kernel, it also uncovered another grouping, as noted by Siraj.

The newly identified star cluster has been dubbed the Inner Kernel, located at approximately 43 astronomical units from the Sun. Objects within this cluster exhibit highly circular orbits that align almost perfectly with the solar system’s disk.

“Such orbital stability indicates ancient, undisturbed structures. These formations can unravel mysteries regarding the solar system’s evolution, the movement of giant planets, and the environments it encountered during its early history,” Siraj explained.

Understanding how Neptune migrated from the inner solar system, where it is believed to have originated, to its present position could be particularly revealing, according to David Nesvorny, one of the original discoverers of the kernel at the Southwest Research Institute in Colorado. Nesvorny suggests that as Neptune migrates outward, the kernels, along with the KBOs forming the Inner Kernel, may have been temporarily stabilized through gravitational interactions with the giant planet, creating the aggregation seen today, before being released as Neptune continues its trajectory.

Chile’s Vera C. Rubin Observatory, which commenced operations this year, is anticipated to unveil even more KBOs, enhancing our understanding of both the core and the inner core, and potentially revealing undiscovered structures at the solar system’s periphery. “The deeper we delve into the structure of the Kuiper Belt, the more we uncover about the solar system’s history,” Siraj stated.

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Source: www.newscientist.com

Google’s Gemini 3 Model Keeps AI Buzz Alive – For the Time Being

Gemini 3 is Google’s latest AI model

VCG (via Getty Images)

Google’s newest chatbot, Gemini 3, has shown remarkable advancement on various benchmarks aimed at evaluating AI progress, according to the company. While these accomplishments may mitigate concerns about a potential AI bubble for the time being, it’s uncertain how effectively these scores reflect real-world performance.

Moreover, the ongoing issues of factual inaccuracies and problematic illusions that are often present in large-scale language models remain unaddressed, particularly in scenarios where accuracy is critical.

In a blog post announcing the new model, Google leaders Sundar Pichai, Demis Hassabis, and Koray Kavukcuoglu stated that Gemini 3 possesses “PhD-level reasoning,” a term also used by competitor OpenAI during the release of its GPT-5 model. They presented scores from several assessments aimed at measuring “graduate-level” knowledge, such as Humanity’s Last Exam, comprising 2500 research-oriented questions from fields like mathematics, science, and humanities. Gemini 3 achieved a score of 37.5 percent on this exam, surpassing the previous record held by OpenAI’s GPT-5, which scored 26.5 percent.

Such improvements could indicate that the model has developed enhanced capabilities in certain areas. However, Luc Rocher suggests caution in interpreting these outcomes. “If a model increases its score from 80 percent to 90 percent on a benchmark, what does that represent? Does it mean the model was 80 percent PhD-level and is now 90 percent? This is quite difficult to ascertain,” he remarks. “It’s challenging to quantify whether an AI model demonstrates inference, as that concept is highly subjective.”

Benchmark tests come with numerous limitations, including the requirement for single answers or multiple-choice responses that do not necessitate demonstrating how the model operates. “It’s straightforward to evaluate models using multiple-choice questions,” notes Roche. “Yet in real-world scenarios—like visiting a doctor—you are not assessed with multiple-choice questions. Likewise, a lawyer does not provide legal counsel through pick-and-choose answers.” There’s also the risk that responses to such tests could be included in the training data of the AI models being assessed, essentially allowing for cheating.

The ultimate evaluation of whether Gemini 3 and its advanced AI models justify the massive investments being made by companies like Google and OpenAI in AI data centers hinges on user experience and the perceived trustworthiness of these tools, according to Roscher.

Google asserts that enhancements to the model will assist users in developing software, managing emails, and analyzing documents more effectively. The company also emphasizes that it will enhance Google searches, providing AI-generated results alongside graphics and simulations.

Perhaps the most significant advancement, as articulated by Adam Mahdi from Oxford University, is the autonomous coding capabilities facilitated by AI tools, a technique known as agent coding. “We might be approaching the limits of what traditional chatbots can achieve, and it is here that the true advantages of Gemini 3 Pro come into play. [the standard version of Gemini 3] It’s likely that it won’t be used for everyday conversations, but rather for more intricate and potentially agent-based workflows,” he explains.

Here are some initial reactions online: People admire Gemini’s impressive coding and reasoning skills. However, as is typical with new model releases, some users pointed out failures in seemingly simple tasks like drawing an arrow or a straightforward visual reasoning challenge.

Google recognizes in Gemini 3’s technical specifications that the model continues to experience hallucinations at a rate similar to other major AI models and sometimes disseminates inaccuracies. This lack of progress is a significant concern, according to Artur Davila Garces from City St George’s, University of London. “The challenge lies in the fact that AI companies have been striving to minimize hallucinations for over two years, yet even one severely misleading hallucination can irreparably damage trust in the system,” he warns.

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Source: www.newscientist.com

The Re-examination of Light and Magnetism: Nearly Two Centuries of Progress

SEI 274892023

Illustration of Faraday’s experiment demonstrating the polarization of light by a magnetic field

Enrique Sahagun

In 1845, physicist Michael Faraday presented the first direct evidence linking electromagnetism and light. This connection has proven to be even more substantial than Faraday anticipated.

During his experiment, Faraday directed light through a glass containing a boric acid and lead oxide mixture placed within a magnetic field. He observed that this altered the light, resetting its polarization direction upon exiting the glass.

For the last 180 years, it has been widely accepted that light acts as an electromagnetic wave, with the “Faraday effect” illustrating how interactions between the magnetic field, charges in the glass, and the light’s electric component result in the rotation and alteration of the light waves as they enter the material.

Interestingly, it has long been assumed that the magnetic component of light has minimal involvement in the Faraday effect. However, Amir Capua and Benjamin Assulin, a research team from the Hebrew University in Jerusalem, Israel, has demonstrated otherwise.

“We now comprehend that the secondary component of light interacts with matter,” Capua states.

Capua explains that two main reasons deterred researchers from exploring the magnetic component of light’s involvement in the Faraday effect. First, magnetic forces within materials such as Faraday glass seem relatively weak compared to electrical forces. Second, when a material like Faraday glass is magnetized—aligning the quantum spins of its components with the magnetic field—these spins typically do not synchronize with the light wave’s magnetic component, indicating a weak interaction.

However, Capua and Assulin discovered that if the magnetic component of the light is circularly polarized (spiral-shaped), it may interact more strongly with the magnetic spins within the glass. They concluded that this is due to the magnetic component of light consisting of several corkscrew waves, even without deliberate manipulation.

Calculations by the two researchers revealed that if Faraday’s experiment were replicated using a magnetic material called terbium gallium garnet (TGG) instead of glass, this magnetic interaction could account for 17 percent of the Faraday effect when visible light passes through. Moreover, if infrared light were used with TGG, magnetic interactions might contribute up to 70 percent of the observed Faraday effect.

Igor Rozhansky, a researcher at the University of Manchester, UK, states that the new calculations are compelling and suggest promising experimental evaluations in the future. The previously overlooked magnetic component of the Faraday effect could provide researchers with innovative approaches to manipulate spin in materials, Rozhansky notes. He further mentioned that it remains an open question whether this effect may surpass the conventional Faraday effect in certain materials.

Future experiments could reveal discoveries extending from fundamental physics to practical applications. Capua envisions potential uses for the interaction between the magnetic spin of some materials and the magnetic component of light, which could lead to advancements in spin-based sensors and data storage technologies.

Science of the Renaissance: Italy

From Brunelleschi and Botticelli to polymaths like Leonardo da Vinci and Galileo Galilei, delve into the remarkable scientific minds and discoveries of the Renaissance that solidified Italy’s position at the forefront of scientific innovation.

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Source: www.newscientist.com

Quantum Computers with Recyclable Qubits: A Solution for Reducing Errors

Internal optics of Atom Computing’s AC1000 system

Atom Computing

Quantum computers, utilizing qubits formed from extremely cold atoms, are rapidly increasing in size and may soon surpass classical computers in computational power. However, the frequency of errors poses a significant challenge to their practicality. Researchers have now found a way to replenish and recycle these qubits, enhancing computation reliability.

All existing quantum systems are susceptible to errors and are currently unable to perform calculations that would give them an edge over traditional computers. Nonetheless, researchers are making notable advancements in the creation of error correction methods to address this issue.

One approach involves dividing the components of quantum computers, known as qubits, into two primary categories: operational qubits that manipulate data and auxiliary qubits that monitor errors.

Developing large quantities of high-quality qubits for either function remains a significant technical hurdle. Matt Norcia and his team at Atom Computing have discovered a method to lessen the qubit requirement by recycling or substituting auxiliary qubits. They demonstrated that an error-tracking qubit can be effectively reused for up to 41 consecutive runs.

“The calculation’s duration is likely to necessitate numerous rounds of measurement. Ideally, we want to reuse qubits across these rounds, minimizing the need for a continuous influx of new qubits,” Norcia explains.

The team utilized qubits derived from electrically neutral ytterbium atoms that were chilled close to absolute zero using lasers and electromagnetic pulses. By employing “optical tweezers,” they can manipulate each atom’s quantum state, which encodes information. This method allowed them to categorize the quantum computer into three distinct zones.

In the first zone, 128 optical tweezers directed the qubits to conduct calculations. The second zone comprised 80 tweezers that held qubits for error tracking, or that could be swapped in for faulty qubits. The third zone functioned as a storage area, keeping an additional 75 qubits that had recently been deemed useful. These last two areas enabled researchers to reset or exchange the auxiliary qubit as needed.

Norcia noted that it was challenging to establish this setup due to stray laser light interfering with nearby qubits. Consequently, researchers had to develop a highly precise laser control and a method to adjust the state of data qubits, ensuring they remained “hidden” from specific harmful light types.

“The reuse of Ancilla is crucial for advancing quantum computing,” says Yuval Borger from QuEra, a U.S. quantum computing firm. Without this ability, even basic calculations would necessitate millions, or even billions, of qubits, making it impractical for current or forthcoming quantum hardware, he adds.

This challenge is recognized widely across the atom-based qubit research community. “Everyone acknowledges that neutral atoms understand the necessity to reset and reload during calculations,” Norcia asserts.

For instance, Borger highlights that a team from Harvard and MIT employed similar techniques to maintain the operation of their quantum computer using 3000 ultra-cold rubidium atoms for several hours. Other quantum setups, like Quantinuum’s recently launched Helios machine, which uses ions controlled by light as qubits, also feature qubit reusability.

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Source: www.newscientist.com

The Reinterpretation of Light and Magnetism: Two Centuries in the Making

Illustration of Faraday’s Experiment Revealing the Polarization of Light by a Magnetic Field

Enrique Sahagun

In 1845, physicist Michael Faraday provided groundbreaking evidence connecting electromagnetism and light. This relationship has proven to be stronger than Faraday initially anticipated.

During his experiment, Faraday directed light through a mixture of boric acid and lead oxide contained in a magnetic field. He noticed a shift in the light, with its polarization direction being altered upon exiting the glass.

For the last 180 years, it has been a widely held belief that light acts as an electromagnetic wave, with the “Faraday effect” illustrating how the interplay of the magnetic field, the charge within the glass, and the electric component of light causes a rotation and deviation in the direction of light waves once they leave the material.

Surprisingly, scholars have long assumed that the magnetic aspect of light has little impact on the Faraday effect. However, Amir Capua and Benjamin Assulin from the Hebrew University in Jerusalem, Israel, have demonstrated otherwise.

“We now recognize that the secondary aspect of light interacts with matter,” explains Capua.

Capua notes two reasons why the magnetic component of light’s involvement in the Faraday effect has been overlooked. Firstly, the magnetic forces present in materials like Faraday glass seem significantly weaker compared to their electrical counterparts. Secondly, when a substance such as Faraday glass is magnetized, the quantum spins of its constituents behave like miniature magnets and often fail to synchronize with the magnetic component of the light wave, implying minimal interaction.

However, Capua and Assulin realized that if the magnetic component of light is circularly polarized (spiral or corkscrew-shaped), it may engage more effectively with the magnetic spins within the glass. They reached this conclusion based on the observation that light’s magnetic component naturally comprises several corkscrew waves without needing any specialized manipulation.

The researchers’ calculations indicate that repeating Faraday’s experiment using a magnetic material called terbium gallium garnet (TGG) in place of glass could account for 17 percent of the Faraday effect noted when visible light travels through it. When infrared light traverses the TGG material, magnetic interactions could explain as much as 70 percent of the resulting Faraday effect.

Igor Rozhansky from the University of Manchester, UK, asserts that these new calculations are compelling and point towards feasible experimental inquiries. The previously overlooked magnetic component of the Faraday effect could unveil new methods for controlling spin within materials, according to Rozhansky. He suggested it remains an open question whether this effect might surpass the traditional Faraday effect in certain materials.

Future experiments may yield groundbreaking findings, spanning from fundamental physics to practical applications. Capua envisions the possibility of utilizing the interaction between the magnetic spin of select materials and the magnetic component of light to manipulate materials, potentially leading to innovative spin-based sensors and data storage systems.

Science of the Renaissance: Italy

Explore the great scientific minds and breakthroughs of the Renaissance, from Brunelleschi and Botticelli to polymaths like Leonardo da Vinci and Galileo Galilei, and discover Italy’s pivotal role in shaping scientific inquiry.

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Source: www.newscientist.com

Kissing Likely Evolved from Our Ape Ancestors 21 Million Years Ago

Romantic kisses may trace back to our evolutionary history

ATHVisions/Getty Images

Ancient beings like Neanderthals likely engaged in kissing, and our primate ancestors might have practiced it as far back as 21 million years ago.

There is considerable discussion regarding the origins of romantic kissing among humans. While ancient texts suggest sexual kissing existed in Mesopotamia and Egypt around 4,500 years ago, such evidence has only surfaced within the past 4,000 years. Some suggest that 46 percent of human cultures argue that kissing is a relatively recent cultural phenomenon.

However, it’s noted that Neanderthals shared oral bacteria, and kissing has also been documented in chimpanzees, bonobos, and orangutans, suggesting the practice may precede existing historical records.

To explore this further, Matilda Brindle and colleagues from the University of Oxford investigated the evolutionary background of kissing. “Kissing appears to be an evolutionary paradox; it likely doesn’t contribute directly to survival and can even pose risks in terms of pathogen transmission,” she states.

The researchers defined kissing in a manner applicable across various species, describing it as non-hostile, mouth-to-mouth contact that involves lip movements but excludes the exchange of food.

This definition eliminates many forms of affection, such as kisses on the cheek. “If you kiss someone on the cheek, it feels like a kiss, but according to our definition, it’s not,” Brindle explains. “Humans have elevated kissing to a new level.”

They then examined scientific literature and consulted primate researchers for instances of kissing among modern monkeys and apes from Africa, Europe, and Asia.

To gauge the probability that various ancestral species also engaged in kissing, Brindle and her team mapped this data onto the primate family tree, employing a statistical method called Bayesian modeling to simulate diverse evolutionary scenarios.

The findings indicate that kissing likely originated in the ancestors of great apes approximately 21.5 to 16.9 million years ago, with an 84 percent probability that Neanderthals also practiced it.

“Clearly, it involves Neanderthals kissing, though we can’t ascertain whom they were kissing,” Brindle notes. “Nevertheless, the similarity in oral microbiomes between humans and Neanderthals, coupled with the fact that many non-African humans carry Neanderthal DNA, supports the idea that they probably shared kisses. This certainly adds a romantic dimension to human-Neanderthal relationships.”

Brindle acknowledges a lack of sufficient data to explain why kissing developed but proposes two hypotheses.

“In the context of sexual kissing, assessing mate quality could enhance reproductive success,” she suggests. “If a partner has poor oral hygiene, they might decide against mating with them.”

Moreover, sexual kissing could facilitate post-coital success by heightening arousal and fostering conditions that allow for faster ejaculation and a vaginal pH more accommodating to sperm.

Another prevailing theory is that non-sexual kissing evolved from grooming, which serves to strengthen social bonds and alleviate tension. “Chimpanzees literally kiss and reconcile after conflicts,” Brindle points out.

“Based on current evidence, I believe kissing undoubtedly serves an affiliative purpose,” says Zanna Clay from Durham University, UK. “We know, for instance, that in chimpanzees, it plays a vital role in mending social ties. However, I find the sexual aspect somewhat uncertain.”

Regarding whether kissing is an evolved behavior or a cultural construct, Brindle asserts, “Our findings strongly indicate that kissing has evolved.”

Trolls Punk Arbor, a professor at the University of Copenhagen, who traced the initial references to kissing in ancient Mesopotamian texts, concurs. “This provides a well-rounded foundation for asserting that kissing has been a part of human behavior for an extended period,” he states.

Nonetheless, this does not encompass the entire narrative, considering many individuals do not engage in kissing. “I believe there is a significant cultural element involved, which likely varies across different cultural contexts,” Clay observes.

Ancient caves, the origins of humanity: Northern Spain

Explore some of the planet’s oldest cave paintings in the picturesque region of northern Spain. Travel back 40,000 years to uncover how our ancestors lived, played, and worked. From ancient Paleolithic art to stunning geological formations, each cave conveys a singular and timeless narrative.

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Source: www.newscientist.com

Scientists May Have Uncovered a New Method for Searching for Extraterrestrials

Researchers have announced a groundbreaking method for detecting traces of past life, which may enhance efforts to find extraterrestrial life on other planets.

Utilizing advanced chemical techniques alongside artificial intelligence, scientists have uncovering signs of ancient life in Earth’s 3.3 billion-year-old rock formations. They are optimistic that a similar methodology could be utilized on samples from icy bodies like Mars or Europa in the future.

A study published in Proceedings of the National Academy of Sciences involved analyzing over 400 samples of ancient sediments, fossils, modern flora, fauna, fungi, and meteorites to rigorously test the new detection model.

The outcome? A system capable of differentiating between remnants of life and non-living materials with more than 90% accuracy.

“This serves as a compelling example of how contemporary technology can illuminate Earth’s oldest narratives and revolutionize our exploration of ancient life on both Earth and beyond,” said Dr. Michael Wong, an astrobiologist and planetary scientist who co-authored the study. “This is a powerful new asset in the field of astrobiology.”

To extract subtle chemical signatures left by ancient organisms, the research team employed pyrolysis-gas chromatography-mass spectrometry to break down molecular structures within the samples.

Subsequently, these intricate chemical patterns were analyzed using machine learning models to identify biosignatures that were too degraded for conventional interpretation.

Organic matter extracted from 2.5 billion-year-old rock samples containing fossilized microorganisms, such as this photomicrograph, still holds fragments of biomolecules possibly produced by photosynthesis – Photo credit: Andrew D. Czaja

Co-author Dr. Robert Hazen remarked in BBC Science Focus that this technique signifies a “paradigm shift” in the field, as the algorithm does not rely on detecting specific molecules like DNA or lipids, which could indicate past life.

Instead, it focuses on the distribution of available substances and whether these patterns imply that life may have existed there.

“For the first time, we are examining distribution capabilities,” he explained. “This supports broader analyses when investigating highly degraded samples with minimal information.”

The oldest biosignature identified dates back 3.3 billion years, nearly double the previous record of around 1.7 billion years.

Additionally, researchers uncovered molecular evidence indicating that oxygen-producing photosynthesis occurred at least 2.5 billion years ago, extending the known chemical record of photosynthesis by over 800 million years.

Historically, scientists have traced life back 3.5 billion years through two main types of evidence: ancient rock formations created by microbial communities that formed sticky, layered “mats,” yielding mound-like structures called stromatolites, and observable changes in isotope ratios within the rocks.

however, suitable samples for such analyses remain rare. The new machine learning technique circumvents the requirement for intact fossils or preserved biomolecules, offering a complementary method applicable to a broader array of rocks.

The algorithm also goes beyond a basic survival or non-survival assessment. It can already differentiate between photosynthetic and non-photosynthetic organisms, as well as categorize broad cell groups known as eukaryotes and prokaryotes.

“We analyzed extensive data patterns and found clear distinctions between living and non-living entities,” Hazen noted. This capability could be vital for investigations on Mars, where scientists are uncertain about the biochemical nature of any potential life.

3.5 billion-year-old shale sample used for analysis – Photo credit: Michael L. Wong

If retrieving samples from Mars becomes excessively costly, Hazen envisions a rover equipped with an array of devices that could apply the same machine learning technique directly on the Martian surface. His team recently secured funding from NASA to develop such an instrument package.

In the interim, the team plans to implement the technique on samples from Earth’s Mars-like deserts, aiding the groundwork for future analyses of Martian rock.

“What’s notable is that this approach does not depend on finding recognizable fossils or intact biomolecules,” emphasized co-lead author Dr. Anirudh Prabhu.

“AI has not only expedited our data analysis but also empowered us to interpret messy and degraded chemical data. AI opens new avenues for exploring ancient and extraterrestrial environments, guided by patterns we may never have considered otherwise.”

The authors cautioned that while the model is complementary to existing techniques, it should not yet be viewed as definitive proof of life. However, they believe it could become an essential analytical tool in both earth and planetary science.

“For decades, we’ve sought signs of life in ancient rocks with a limited set of tools,” remarked co-author and paleontologist Professor Andrew Knoll.

“What’s extraordinary about this work is that it enhances our toolkit and introduces entirely new, more profound questions. Machine learning can help unveil biological signals that were, until now, largely undetectable. This represents a significant leap forward in our ability to interpret Earth’s deep-time record of life.”

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Source: www.sciencefocus.com

Our Solar System is Traveling Over Three Times Faster Than Anticipated

In order to understand the motion of the solar system, astrophysicist Lukas Böhme and his team at Bielefeld University examined the arrangement of radio galaxies.

An artist’s representation of the solar system. Image credit: NASA/JPL.

“Our findings indicate that the solar system is moving over three times faster than existing models suggest,” stated Dr. Böhme, the study’s lead author.

“This outcome starkly opposes expectations grounded in standard cosmology and compels us to re-evaluate our previous beliefs.”

In their research, the authors studied the distribution of radio galaxies, which are distant galaxies emitting exceptionally strong radio waves, a type of electromagnetic radiation with long wavelengths similar to those used in radio transmissions.

Radio waves are capable of penetrating dust and gas that block visible light, enabling radio telescopes to detect galaxies that are hidden from optical instruments.

As the solar system traverses space, its movement generates subtle “headwinds.” Consequently, the number of radio galaxies appearing in its path will be marginally increased.

These variations are slight and can only be discerned through extremely sensitive measurements.

Utilizing data from the LOFAR (Low Frequency Array) telescope along with two additional radio observatories, astronomers successfully counted these radio galaxies with remarkable accuracy for the first time.

They employed a novel statistical method to address the complexity posed by the fact that many radio galaxies consist of multiple components.

This enhanced analysis improved the realism of the measurements, albeit with increased uncertainties.

Nonetheless, the combination of data from all three radio telescopes unveiled deviations exceeding 5 sigma, a statistically significant signal that suggests an important scientific finding.

The measurements indicated that the anisotropy (dipole) in the distribution of radio galaxies is 3.7 times more robust than the predictions of the Standard Model of the Universe.

This model outlines the universe’s origin and evolution since the Big Bang, assuming a nearly uniform matter distribution.

“If the solar system is indeed moving at this velocity, we must question fundamental notions about the large-scale structure of the universe,” commented study co-author Professor Dominic Schwartz from Bielefeld University.

“Alternatively, the spatial distribution of radio galaxies themselves may not be as uniform as previously thought.”

“In any event, our current model is undergoing scrutiny.”

The new findings align with prior observations when astronomers investigated quasars, the very bright centers of distant galaxies featuring supermassive black holes that consume matter and release vast energy.

This same anomalous effect is present in infrared data, indicating that it is a genuine characteristic of the universe rather than a measurement anomaly.

This research underscores how innovative observational techniques can fundamentally alter our understanding of the universe and highlights the vast areas still awaiting discovery.

For more details, view the study published in this month’s issue of Physical Review Letters.

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Lucas Boehme et al. 2025. Number of overdispersed radio sources and detection of excessive radio dipoles. Physical Review Letters 135, 201001; doi: 10.1103/6z32-3zf4

Source: www.sci.news

Researchers Explore the Structure of Bacteriophages

The researchers employed cryo-electron microscopy to examine the structure of Bas63, a bacteriophage from the Ounabilinae subfamily. Felixona virus targets the genus Escherichia coli to explore their evolutionary relationships and functional adaptations.

Composite representation of the complete Bas63 virion. Image credit: Hodgkinson Bean et al., doi: 10.1126/sciadv.adx0790.

Bacteriophages classified as Caudobilites constitute the most prevalent group of viruses on the planet.

The Caudovirites encompass 7 orders, 74 families, and 121 subfamilies.

“Bacteriophages are of significant interest to researchers seeking alternatives to antibiotics in response to the growing threat of antimicrobial resistance,” stated Dr. James Hodgkinson-Bean from the University of Otago.

“These bacteriophage viruses pose no harm to multicellular organisms and can selectively target and eliminate specific bacteria.”

“This is why there is a surge in research and application of ‘phage therapy’ for treating highly drug-resistant bacterial infections.”

“Bacteriophages are intricate viruses that infect bacteria using a large mechanical structure known as a ‘tail.’

In this study, Dr. Hodgkinson-Bean and his team examined the structure of Bas63 at the molecular level to gain insights into the tail’s role during infection.

“This research is crucial for identifying optimal bacteriophages for treatment and understanding the variations in infection behavior observed in laboratory settings,” said Dr. Hodgkinson-Bean.

“As antibiotic resistance escalates and plant pathogens threaten global food security, bacteriophages represent a promising alternative,” remarked Dr. Mifnea Bostina, also from the University of Otago.

“Our comprehensive bacteriophage blueprint advances the strategic design of medical, agricultural, and industrial uses, from treating infectious diseases to combating biofilms in food processing and water systems.”

“Beyond the realm of science, the 3D data illustrating the virus’s unique whisker and collar combinations, hexameric decorative proteins, and varied tail fibers might inspire artists, animators, and educators.”

Understanding viral structure also enhances our comprehension of their evolution.

“While DNA generally serves as the primary marker of human evolution, the three-dimensional structure of a virus offers more nuanced information about its distant evolutionary ties to other viruses,” said Dr. Hodgkinson-Bean.

The authors identified features previously observed only in distantly related viruses, uncovering previously unrecognized evolutionary connections.

“Through structural research, we have established that bacteriophages are related to herpesviruses, and this connection is believed to date back billions of years, prior to the rise of multicellular life,” remarked Dr. Hodgkinson-Bean.

“Looking at the structure of bacteriophages is akin to viewing a living fossil, an ancient primordial entity.”

“There’s something profoundly beautiful about it.”

These findings were published in the Journal on November 12, 2025, in Scientific Progress.

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James Hodgkinson-Bean et al. 2025. Cryo-EM structure of bacteriophage Bas63 reveals structural conservation and diversity of bacteriophage Bas63. Felixona virus Genus. Scientific Progress 11(46); doi: 10.1126/sciadv.adx0790

Source: www.sci.news

Eighty Percent of the Global Population Now Resides in Urban Areas

Eixample district in Barcelona, Spain

Shutterstock/Bear Photo

Currently, over 80 percent of the global population resides in urban areas, a statistic that’s on the rise, emphasizing the necessity for cities to enhance both human health and environmental sustainability, as detailed in a significant United Nations report.

The latest Outlook for Global Urbanization report, published in 2018, indicated that 55 percent of the population lived in urban settings. However, these estimates vary internationally based on disparate definitions of urban and rural regions. For instance, Denmark considers an urban settlement to be one with a population of about 200, while Japan sets the threshold at 50,000, obscuring the understanding of global urbanization.

To clarify matters, Sarah Hertog, a researcher for the United Nations in New York, identified urban areas as those with at least 50,000 inhabitants and a density of 1,500 people per square kilometer, or cities with a minimum of 5,000 people and 300 people per square kilometer.2 “For the first time, we applied a consistent definition across all countries,” Hertog stated.

The researchers analyzed satellite and national survey data from 237 nations and territories to project global urbanization trends for 2025. Their findings indicated that 45 percent of the world’s population currently resides in cities, most within urban areas of fewer than 250,000 inhabitants, meaning a total of 81 percent of people are urban residents, with the last 19 percent in rural regions.

Statistical models incorporating factors like aging and migration patterns predict that by 2050, 83 percent of the global population will inhabit cities rather than rural settings. Although the overall number of city and town residents will rise until 2050, the rural population, mainly influenced by the Democratic Republic of the Congo, is expected to peak in the 2040s and subsequently decline until 2050.

These new estimates will assist the United Nations in tracking progress towards its goals. Hertog noted that the aim is to achieve the 11th Sustainable Development Goal, which aspires to make urban areas more inclusive, safe, resilient, and sustainable by 2030. The outcomes will also be included in a report by the Intergovernmental Panel on Climate Change to help inform policies to mitigate climate change.

Factors driving urban population growth differ by region. In eastern and southern Asia, rural-to-urban migration is predominant. “People migrate not just for job opportunities and education, but also for social interactions,” according to Hertog. While international migration significantly influences Europe and North America, in sub-Saharan Africa, the rise is largely attributable to higher birth rates compared to death rates.

The increase in urbanization presents both challenges and opportunities for the environment. As urban populations expand city limits, improper public transport planning can lead to urban sprawl, increasing car dependency and carbon emissions. Conversely, thoughtful planning can yield more energy-efficient transit options than those offered in rural areas.

Urbanization also impacts health. For instance, residents in urban settings are typically more susceptible to air pollution and extreme heat, which correlate with issues like cardiovascular problems and a higher risk of Alzheimer’s disease, as stated by Andrea Mechelli from King’s College London. Moreover, the scarcity of green spaces in certain urban locales can lead to heightened anxiety and cases of depression, he emphasizes.

However, urbanization also offers health advantages. “Healthcare in urban settings tends to be more accessible and comprehensive compared to rural areas,” notes Mechelli. “Additionally, social connections are easier to establish in cities, where individuals can find like-minded people, unlike in rural regions where one might need to travel for hours to meet others with similar interests.”

This does not imply that urbanization should be halted or that city living is undesirable. Mechelli concluded, “This report underscores the urgency to enhance our urban environments, making them greener and more livable, which would yield numerous benefits.”

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Source: www.newscientist.com

Mathematicians Announce Significant Impact of Google’s AI Tools on Research Advancement

AI aids mathematicians in solving diverse problems

Andresle/Getty Images

The AI tools created by Google DeepMind are proving to be remarkably effective in aiding mathematical research, and experts believe this could initiate a wave of AI-driven mathematical breakthroughs on an unprecedented scale.

In May, Google unveiled an AI system named AlphaEvolve, which may reveal new algorithms and formulas. This system generates numerous potential solutions through Google’s AI chatbot Gemini, which then feeds them into a distinct AI evaluator. This evaluator filters out nonsensical outputs that chatbots are prone to produce. During initial tests, Google researchers pitted AlphaEvolve against over 50 unresolved mathematical problems, and discovered that it accurately rediscovered the most prominent solutions established by humans in approximately three-quarters of the cases.

Recently, Terrence Tao and his team at UCLA assessed the system using 67 more rigorous and extensive mathematical research queries. They found that AlphaEvolve did more than merely revisit old solutions; in certain instances, it could generate improved resolutions suitable for integration into other AI systems, like a more resource-intensive version of Gemini or AlphaProof, the AI that secured a gold medal in this year’s International Mathematics Olympiad, to craft new mathematical proofs.

Tao noted that it’s challenging to gauge overall effectiveness, as the problems differ in their complexities. However, the system consistently operated much faster than any individual mathematician.

“Addressing these 67 problems through traditional methods would require us to design a specific optimization algorithm for each task. That would take years and we might never have initiated this project at all. This initiative offers a chance to engage in mathematics on a previously unseen scale,” Tao states.

AlphaEvolve is particularly adept at solving what are known as optimization problems. These encompass tasks like determining the optimal figures, formulas, or objects that best resolve specific challenges. For instance, calculating the maximum number of hexagons that can occupy a defined area.

While the system is capable of addressing optimization problems across various branches of mathematics, such as number theory and geometry, these still represent “only a small fraction of all the problems that mathematicians are interested in,” according to Tao. Nonetheless, the power of AlphaEvolve is such that mathematicians might attempt to reformulate non-optimization problems into solvable forms for AI. “These tools offer a fresh perspective for tackling these issues,” he adds.

A potential drawback, however, as Tao explains, is that the system sometimes tends to “cheat” by producing answers that seem correct but utilize loopholes or methods that don’t genuinely solve the problems. “It’s akin to administering a test to a group of exceptionally bright yet morally ambiguous students who will do whatever it takes to score highly,” he remarks.

Even with its flaws, AlphaEvolve’s achievements are garnering interest from a broader segment of the mathematical community that might have previously leaned towards more general AI solutions such as ChatGPT, according to team member Javier Gomez Serrano from Brown University. Although AlphaEvolve isn’t publicly accessible yet, numerous mathematicians have expressed interest in testing it.

“There’s definitely a growing curiosity and openness to employing these tools,” asserts Gomez Serrano. “Everyone is eager to discover their potential. Interest in the mathematical community has surged compared to a year or two ago.”

Tao believes that such AI systems alleviate some of the burdens of mathematical work, allowing researchers to focus on other areas. “Mathematicians are few in number globally, making it infeasible to consider every problem. However, there exists a multitude of mid-level difficulties where tools like AlphaEvolve are particularly effective,” he notes.

Jeremy Avigado, a researcher at Carnegie Mellon University in Pennsylvania, observes that machine learning methods are increasingly beneficial to mathematicians. “The next step is enhancing collaboration between computer scientists skilled in machine learning tools and mathematicians with domain-specific knowledge,” he emphasizes.

“We aspire to witness more outcomes like this in the future and identify methods to extend this approach into more abstract mathematical fields.”

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Source: www.newscientist.com

What is Cloud Seeding and Could It Solve Iran’s Drought Crisis?

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Riverbed near Latian Dam, one of Tehran’s main water sources, Iran

BAHRAM/Middle East Images/AFP via Getty Images

Iran faces an extreme drought, prompting the president to suggest a possible evacuation of Tehran. To mitigate the situation, cloud-seeding aircraft will start operations on November 15, set to persist through the rainy season until May. However, experts caution that this method is complex and unlikely to significantly alleviate the water crisis on its own.

How critical is the drought in Iran?

Iran’s rainfall is down by 85 percent, with Tehran registering only 1 mm this year. Local reservoirs are reported to be in a dire condition, with 32 dams barely holding 5 percent of their capacity. Satellite imagery shows some areas completely parched.

Residents of Tehran have cut their water usage by approximately 10 percent, yet this reduction falls short. Water pressure has diminished overnight, and officials are preparing to fine households and businesses that exceed their water limits. The president indicated that if rains do not increase by December, 14 million people in Tehran might need to relocate.

What are the causes of drought?

Experts attribute the drought, which has persisted for five years, to climate change. This autumn is the driest Iran has seen in 50 years, with temperatures reaching above 15°C (59°F) in Tehran, a city usually experiencing snowfall in November.

However, mismanagement is largely to blame. Kave Madani, a former environmental ministry official, labels Iran a “water bankrupt.” The government has expanded agriculture in arid regions excessively, stressing water resources. A staggering number of illegal wells—around half a million—have been drilled by desperate farmers, draining groundwater supplies.

What exactly is cloud seeding?

Cloud seeding originated in the 1940s with scientists like Bernard Vonnegut, brother of author Kurt Vonnegut. The process involves dispersing particles that encourage water droplets in clouds to precipitate as rain. While some studies have experimented with salt, the focus has generally been on spraying silver iodide into upper-level mixed-phase clouds. When supercooled liquid droplets encounter this crystalline material, they crystallize into ice that ultimately falls as rain or snow.

Determining the amount of precipitation caused by cloud seeding can be challenging, especially in the absence of cloud formation.

“The natural variability of clouds is significant, making it tough to quantify their impacts,” says Andrea Frosman from the University of Clermont-Auvergne, France. “Externally, clouds appear, but not all of them bring rain.”

A 2014 experiment conducted in Wyoming indicated that cloud seeding could enhance precipitation by 5 to 15 percent.

Is there hope for resolving the drought?

Previously, Iran blamed Israel and the United Arab Emirates for “stealing” rain via cloud seeding, but it’s now taking matters into its own hands. It plans to deploy cargo planes, drones, and a “ground generator”, which is essentially a smoker’s oven, commonly located in mountainous regions.

On November 15, clouds formed over the watershed surrounding Lake Urmia, which has been barren for over two decades, now reduced to a salt flat littered with decaying boats. Initial reports suggest that areas west of the lake received up to 2.7 centimeters of rain the following morning, as indicated by a precipitation map from the University of California, Irvine.

Success in cloud seeding depends on the presence of moisture-rich clouds, which might be sparse in arid Iran, where large bodies of water are limited.

“Cloud seeding becomes particularly challenging during droughts, owing to the extremely dry atmosphere that may not support moisture-laden clouds,” notes Karen Howard, a scientist with the U.S. General Accounting Office.

Yet, in recent days, numerous rain clouds have poured into Iran from the Black Sea, causing localized flooding in regions such as Iram and Kurdistan on November 16.

Cloud seeding might help “extract a few additional droplets” from these weather systems, according to Armin Sorooshian at the University of Arizona. “While it won’t create flooding or completely solve the drought issue, it may provide a minor benefit.”

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Source: www.newscientist.com

Philosophers Propose That Time is a Psychological Construct

In his latest book, A Brief History of the Philosophy of Time, Professor Adrian Verdon from Wake Forest University suggests that our perception of time passing is an instance of psychological projection—an error in cognition that leads to misinterpreting our experiences.

Time is an example of psychological projection. Image credit: Gemini AI.

Phrases like “Time flies,” “Time waits for no one,” and “As time passes” suggest that the movement of time is a real phenomenon influencing our lives. We navigate the present, witnessing events as they transition into memory.

Yet, articulating the concept of time’s flow is challenging. What does it mean for time to ‘pass’? Rivers flow because water moves; how does time move?

While events unfold, we speak of their positions as if they shift continuously through past, present, and future. If some events approach us as future occurrences while others recede into the past, where exactly do they reside? The notions of future and past appear to lack a physical location.

Throughout history, humans have contemplated time, ingraining it into our understanding of ourselves and the surrounding world.

This is why, as a philosopher, I have always deemed advancements in our conceptualization of time—both philosophical and scientific—to be of unique significance.

The Era of Ancient Philosophers

Many ancient philosophers expressed skepticism regarding time and change. Parmenides of Elea, a Greek philosopher from the 6th to 5th centuries BC, questioned how events could transition from future to present to past when neither the future nor the past exists.

He posited that if the future is real, it must also be real at this moment. Thus, if only the present is real, the future cannot be.

This notion implies that present events inexplicably emerge from nothing.

Parmenides wasn’t alone in his doubts; similar ideas regarding the contradictions in our discussions of time can be found in the works of Aristotle, the Advaita Vedanta philosophy of ancient Hinduism, and Augustine of Hippo, known as St. Augustine, among others.

Albert Einstein and the Theory of Relativity

During the early modern period, physicist Isaac Newton operated under the assumption of an unrecognized, real flow of time—time as a dynamic entity, akin to a cosmic clock that meticulously captures all motion and acceleration.

Then came Einstein.

In 1905 and 1915, Einstein introduced his special and general theories of relativity, respectively, challenging long-held beliefs about time and change.

Einstein’s theory dismisses Newton’s view of time as a universal phenomenon.

By Einstein’s era, it had been established that the speed of light remains constant, independent of the light source’s velocity. To accept this fact necessitated an understanding of object speeds as relative.

Nothing can be categorically labeled as stationary or in motion; it all hinges on your “frame of reference.”

A frame of reference provides the spatial and temporal context an observer assigns to an object or event, assuming it is stationary in relation to everything else.

For instance, an observer drifting through space may see a spaceship pass by, yet the universe remains indifferent to whether the observer is immobile and the spaceship is moving or vice versa.

This understanding alters our perspective on the function of watches. Since light’s speed is constant, two observers in motion relative to one another will record different times for the same events.

In a classic scenario, two lightning strikes occur simultaneously. An observer at a train station sees both at the same moment, while an observer on a moving train assigns differing times to each strike based on their relative motion.

Consequently, one observer approaches light from one strike and recedes from the other, leading to the time discrepancy.

The stationary observer perceives both strikes at identical moments since light reaches him simultaneously. Neither perspective is incorrect.

The duration between occurrences and the timing of events relies on the observer’s frame of reference.

Observers in relative motion will disagree on current events; what seems immediate to one may be future to another.

Einstein’s theory posits that all moments in time are equally real. Every past event and future occurrence is currently ‘happening’ to a hypothetical observer. There is no event merely categorized as a potentiality or a distant memory. No singular, absolute present exists; therefore, time does not flow through which events are ‘becoming.’

Change signifies a difference over intervals. I remember a point, and later, I recall even more moments. That encapsulates the essence of time’s passage.

This notion has gained acceptance among both physicists and philosophers, referred to as “eternalism.”

This leads us to an important inquiry: If time’s passage is nonexistent, why do we perceive it as such?

Time as a Psychological Projection

One prevailing notion posits that the sensation of time’s passage is illusory, echoing Einstein’s famous reflections.

Characterizing it as an “illusion” implies that our conviction in time’s passage results from a deceptive perception, akin to an optical trick.

However, I propose that this belief arises from a misunderstanding.

As I illustrate in my book, A Brief History of the Philosophy of Time, our feeling of time traversing is an example of psychological projection.

A simple analogy involves colors: a red rose isn’t inherently red; it reflects specific light wavelengths that evoke the sensation of redness.

In essence, roses aren’t really red nor do they create an illusion of redness—the experience of color arises from our interpretation of objective truths about roses.

It’s valid to distinguish roses by their color; enthusiasts of roses do not claim profound truths about color itself.

In a similar vein, my findings suggest that the experience of time’s passage is neither entirely real nor an illusion; it reflects how humans interpret their environment.

Just as our visual comprehension of reality cannot be fully understood without reference to colors, our understanding of the world relies on the passage of time.

I can assert that my GPS indicates I’ve strayed off course without attributing consciousness to the GPS.

My GPS is non-sentient. Although we lack a mental map of our surroundings, we can trust that the GPS accurately represents our location and destination.

Likewise, even if physics does not accommodate the concept of a dynamic passage of time, time remains effectively dynamic in the context of my experiential reality.

The sensation of time passing is deeply interconnected with how humans articulate their experiences.

Our representations of reality are inherently colored by our perspective as perceivers and thinkers.

The error lies in conflating our perception of reality with reality itself.

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Adrian Verdon. 2025. A Brief History of the Philosophy of Time (2nd Edition). Oxford University Press, ISBN: 9780197684108

Author: Professor Adrian Burdon, a researcher at Wake Forest University.

This article was first published in The Conversation.

Source: www.sci.news

Scientists Discover Gene Linked to Bud Size in Tea Plants

Tea tree (Camellia sinensis) is among the most vital beverage crops globally. The size of tea buds not only impacts the yield and quality of fresh leaves but also influences the compatibility of various tea types. In a recent study, the Chinese Academy of Agricultural Sciences gathered images of apical buds at the one-bud, two-leaf stage from 280 representative tea lines. Their analysis of genetic diversity revealed that the length, width, circumference, and area of tea buds followed a normal distribution. A comparative transcriptome analysis of extreme bud sizes demonstrated a significant negative correlation between the expression levels of four substances. nox genes also showed a relationship with tea bud size, indicating that CsKNOX6 could be a key gene regulating tea bud size negatively.

Tea tree (Camellia sinensis). Image credit: Kim Young Han.

The tea plant stands out as one of the world’s leading beverage crops, cultivated in over 60 countries and consumed by more than 2 billion people globally.

In premium tea production, leaves are typically harvested based on criteria including one bud, one leaf per bud, and two leaves per bud.

Tea bud size not only significantly impacts the yield and quality of fresh leaves but is also closely linked to the processing potential of tea.

Various tea types have different shapes and specific requirements for bud and leaf size.

Research into the molecular mechanisms governing tea bud and leaf size has historically been sparse, hindering genetic improvement efforts.

Understanding the genetic regulatory frameworks of tea bud size is crucial for enhancing tea plant varieties and boosting yield.

In the study led by Dr. Jiedan Chen, the dimensions—length, width, circumference, and area—of buds were quantified across 280 diverse tea strains.

These traits exhibited continuous variation with high heritability, indicating robust genetic control.

Comparative transcriptome analysis of accessions with extreme bud sizes identified four candidate class I KNOX transcription factors that had significantly elevated expression in cultivars with smaller buds.

Among these, genome-wide association mapping is emphasizing CsKNOX6 as a likely pivotal regulatory gene.

CsKNOX6 is located on chromosome 10, with its sequence indicating nuclear localization, aligning with its role in transcription regulation.

To validate its functionality, researchers modelled CsKNOX6 in the plant Arabidopsis.

Transgenic plants exhibited abnormal shoot development, yielding significantly smaller leaves, with leaf area reduced to just 13% of wild-type levels.

This functional evidence substantiates the conclusion that CsKNOX6 serves as a negative regulator of bud and leaf size.

“Bud size is a critical attribute for both agricultural productivity and the quality of tea in the market,” scientists shared.

“Identifying CsKNOX6 creates direct genetic targets for selective breeding, including marker-driven improvements.”

“Although functional tests in Arabidopsis provide substantial support, future gene editing or transgenic validation in tea plants will be vital to confirm regulatory mechanisms in these perennial woody species.”

“This discovery paves the way for precision breeding strategies that enhance yield, consistency, and suitability of tea varieties.”

Identifying CsKNOX6 opens new possibilities for developing tea varieties with optimized bud sizes for various production goals, including premium hand-picked teas or high-yield mechanical harvesting.

This gene can be integrated into molecular breeding programs via SNP marker selection or gene editing approaches to fine-tune developmental growth.

A paper detailing this discovery was published in the journal horticultural research.

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Shuran Zhang et al. 2025. Integration of digital phenotyping, GWAS, and transcriptome analysis reveals key genes for tea plant bud size (Camellia sinensis). horticultural research 12(6):uhaf051; doi: 10.1093/hr/uhaf051

Source: www.sci.news

Ancient Long-Necked Marine Reptiles Discovered in China

The remarkably long neck of Lijangosaurus johnschengensis. The research team, led by paleontologists from the Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, identified 42 cervical vertebrae at the site.

Reconstruction of nososaurs from approximately 240 million years ago showcases previously hidden diversity in southwestern China: Lijangosaurus johnschengensis (center), Nososaurus janjuanensis (top left), Nososaurus luopingensis (top right), Brevicaudosaurus janshanensis (bottom left), and Lariosaurus hongoensis (bottom right). Image credit: Kelai Li.

Lijangosaurus johnschengensis thrived in the mid-Triassic oceans between 247 and 241 million years ago.

The following ancient creatures belong to the Notosaurus clade of marine sauropterygian reptiles.

Nososaurs could reach lengths of up to 7 meters (23 feet) and swam using four paddle-like limbs.

They possessed flat skulls with a network of slender conical teeth specialized for catching fish and squid.

“Sauropterygia emerged as a dominant marine reptile clade in the Early to Middle Triassic, maintaining its significance for approximately 180 million years within the Mesozoic marine ecosystem,” stated lead author Dr. Xiang Qinghua and colleagues.

“Early diverging sauropterygians include placodonts, pachysaurids, nososaurs, and early pistosaurs.”

“The iconic group known as plesiosaurs represents a clade that diverged later from pistosaurs within the suborder Pterosauria.”

“Nososauridae represents the systematic paleontological equivalent of nososaurids and encompasses more than just nososaurids (nososaurus and lariosaurus) as well as other nososaur species.”

“Although numerous species have been described, nososaurs show low diversity at the genus level and in anatomical morphology relative to other sauropterygian subgroups.”

“Typically, nososaurs are larger than pachypleurosaurs but smaller than pistosaurs, including plesiosaurs.”

The skull of Lijangosaurus johnschengensis was small, while its body extended over 2.5 meters (8 feet) in length.

It evolved an extraordinarily long neck with 42 cervical vertebrae, twice the number seen in most sauropterygians of its time.

“Plesiosaurs are generally recognized for their surprisingly long necks,” noted the paleontologists.

“Despite some late-diverging plesiosaur species exhibiting short necks, early plesiosaurs and their Triassic ancestors, early pistosaurs, featured impressively elongated necks with more than 30 cervical vertebrae, indicating a conformational lineage between early pistosaurs and plesiosaurs.”

“In line with this traditional understanding, we consider only necks with more than 30 cervical vertebrae as long or elongated necks in our research.”

“This distinctive feature of plesiosaurs is unmatched among secondary marine quadrupeds; in contrast, other leading marine animals like ichthyosaurs, thalatoids, mosasaurs, and cetaceans typically possess shorter necks and exhibit more fish-like traits.”

The fossilized skeleton of Lijangosaurus johnschengensis was unearthed in a previously unidentified Early Middle Triassic zone of the Beiya Formation in Yunnan Province, China, near the eastern Tibetan Plateau and northern Myanmar.

“This location differs from previously documented fossil-rich regions in southwestern China along the Yunnan-Guizhou border,” the researchers remarked.

Lijangosaurus johnschengensis marks the earliest known instance of a sauropterygian reptile with an exceptionally long neck featuring 42 cervical vertebrae.

“Our findings demonstrate that extreme cervical elongation, defined as possessing more than 30 cervical vertebrae, emerged in sauropterygians prior to the arrival of plesiosaurs and their pterosaur ancestors,” the scientists concluded.

“Moreover, Lijangosaurus johnschengensis shows a unique type of accessory facet joint differing from other reptiles, which is believed to reduce body undulation.”

“This discovery enhances our understanding of the variety of accessory facet joints in reptiles and underscores the high degree of spinal flexibility during the early evolution of sauropterygians.”

The team’s paper is published in the journal Communications Biology.

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W. Wang et al. 2025. The oldest long-necked sauropterygians, Lijangosaurus johnschengensis: Plasticity of vertebral evolution in sauropterygian marine reptiles. Communications Biology August 1551. doi: 10.1038/s42003-025-08911-1

Source: www.sci.news

FEMA’s Acting Administrator Steps Down

David Richardson, who served as the acting administrator of the Federal Emergency Management Agency, tendered his resignation on Monday after approximately six months in the role, as confirmed by two administration officials to NBC News.

Richardson’s short tenure as FEMA administrator occurred during a challenging period for the agency. Under President Donald Trump’s administration, significant budget cuts were proposed, and Trump publicly suggested the agency be phased out following the end of hurricane season in late November.

In a statement released Monday, FEMA along with the Department of Homeland Security, which governs the agency, expressed their “sincere appreciation” for Richardson’s “dedicated service.”

A DHS spokesperson announced that Karen Evans, currently serving as FEMA’s chief of staff, will take on the position of acting administrator effective December 1st.

Richardson mentioned on Monday that he had agreed to serve as acting superintendent during this critical period, indicating that his resignation stemmed from a desire to return to the private sector.

“I took on the role of acting administrator during hurricane season when no one else was available,” Richardson stated. “Hurricane season concludes on December 1st. The threats are nearly over, so it’s time for me to explore another opportunity.”

The White House directed all inquiries regarding Richardson’s resignation to the Department of Homeland Security.

During his time at FEMA, Richardson faced significant criticism for his delayed response to the catastrophic floods in July that struck the Texas Hill Country. He was unreachable for more than 24 hours after over 130 individuals, including 27 girls and their counselors, perished at Camp Mystic, a Christian youth summer camp, on July 4.

Texas Department of Public Safety personnel assess debris at Camp Mystic following flash flooding in Hunt, Texas.
Julio Cortes / AP File

It was later disclosed that Mr. Richardson lacked experience in emergency management prior to his role as acting FEMA administrator. I was on a weekend vacation.

Richardson, a former Marine Corps officer, was appointed to lead FEMA on an interim basis in May after the previous acting administrator, Cameron Hamilton, was removed from the position following a brief tenure. During his time at FEMA, Richardson also served simultaneously as assistant secretary for the Office of Weapons of Mass Destruction Countermeasures at DHS.

This year, FEMA has faced increased scrutiny regarding its effectiveness in responding to hurricanes, floods, and other disasters, particularly as climate change has heightened the frequency and intensity of extreme weather events.

In a phone interview on Monday night, Richardson remarked that he understood his role at FEMA was to “shut things down” upon his arrival.

However, he noted that the agency’s experiences dealing with flooding in Texas and severe flooding in western Alaska underscored the agency’s necessity, albeit on a smaller scale.

“We need to empower states,” he asserted. He believes states can accomplish more but also trusts that Trump will implement reforms to the agency.

In an open letter issued in August, around 200 FEMA employees criticized the Trump administration’s disaster preparedness and emergency management effectiveness after the Texas floods.

The signatories expressed that Homeland Security Secretary Kristi Noem’s request for the office to evaluate FEMA spending exceeding $100,000 impeded the agency’s response to the deadly disaster. They also pointed out that both Richardson and Hamilton lacked the “legal qualifications, Senate confirmation, and proven background” required for the role of FEMA administrator.

Following the publication of the letter, at least 21 FEMA employees faced suspension for signing it.

Richardson stated on Monday night that the $100,000 spending cap would not hinder FEMA’s response.

“If lives were in danger, we wouldn’t have surpassed the $100,000 limit,” he asserted.

Richardson succeeded Hamilton shortly before the commencement of hurricane season, after Hamilton testified on Capitol Hill claiming he believed it was not in the American people’s best interest to abolish FEMA.

This stance opposed President Trump’s proposal to dismantle FEMA and instead allow states to manage disaster responses.

Kristi Noem informed NBC News’ “Meet the Press” in June that President Trump aimed to reform the agency rather than eliminate it altogether.

Some of Richardson’s detractors, including former FEMA communications director Rafael Lemaître, expressed relief at his resignation on Monday. Lemaître is a member of the advisory board for Sabotaging Our Safety, an organization focused on disaster preparedness and emergency management issues.

“Choosing someone with no disaster management experience to lead FEMA is akin to putting a person in the cockpit of a plane during a hurricane who has never flown,” he commented in a statement.

Democratic members of the House Homeland Security Committee also welcomed the news of Richardson’s resignation.

“David Richardson was incompetent, inexperienced, and ill-suited to lead FEMA,” the group stated. “He will be remembered for vanishing when Texas families needed him the most. Thank you for your service.”

Source: www.nbcnews.com

Cosmos: AI Researcher Claims to Achieve Six Months of Work in Just Hours

Can AI conduct scientific research?

Tonio Yumui/Getty

AI researchers can work autonomously for extended periods, completing studies in hours that would take humans months. While developers assert that they have made several “new contributions” to science, skepticism remains among some experts.

The platform, referred to as Kosmos, consists of multiple AI agents adept at data analysis and literature review, aiming to generate groundbreaking scientific insights.

“We have dedicated nearly two years to training AI scientists,” states Sam Rodricks, from Edison Scientific, the company behind Kosmos. “The limitation of previous AI scientists has always been the complexity of the concepts they produce.”

Kosmos endeavors to overcome this challenge. Typically, a session can last up to 12 hours; during this time, when a user inputs a scientific dataset, Kosmos examines roughly 1,500 pertinent academic papers while generating and executing 42,000 lines of code to analyze the data. At the end, the AI compiles a summary of the findings and relevant citations, along with a proposal for further analysis that can initiate the next cycle.

After a predetermined number of cycles, the system produces a report featuring scientific conclusions supported by relevant citations, akin to an academic publication. An assessment from a collective of scholars found that 20 of these cycles corresponded to about six months of their research efforts.

Rodriques remarked that the conclusions drawn by the system tend to be fairly accurate. Edison asked individuals with doctoral-level knowledge in biology to evaluate 102 claims made by Kosmos. The research team discovered that 79.4% of these claims were overall substantiated, including 85.5% concerning data analysis and 82.1% of claims referenced in existing literature. Nevertheless, Kosmos struggles to synthesize this information and generate new claims, achieving an accuracy rate of just 57.9% in this area.

Edison asserts that Kosmos has made seven verifiable scientific discoveries, all of which have been confirmed and replicated by independent specialists in the field using external datasets and diverse methodologies. According to the Kosmos team, four of these discoveries are genuinely novel, while the remaining three were previously documented, though in preprints or unpublished studies.

Among the claimed discoveries is a novel method for identifying when cellular pathways falter as Alzheimer’s disease advances. Another finding suggests that individuals with higher levels of a natural antioxidant enzyme known as superoxide dismutase 2 (SOD2) in their blood may experience less heart scarring.

However, reactions to these claims from the scientific community have varied. The “discovery” related to SOD2 is deemed unremarkable by Fergus Hamilton of the University of Bristol, UK. “That specific causal assertion probably won’t withstand scrutiny as a new finding, and there are methodological flaws inherent in the analysis,” he comments. Professor Rodriques acknowledged that the SOD2 finding had been previously established in mice, but claimed this is the first time it has been recognized at the population level in humans through genomics.

Hamilton pointed out that the data analysis code which the agent attempted to execute malfunctioned, causing Kosmos to overlook potentially essential data while arriving at the same conclusions as existing studies.

“Several critical assumptions were made that were imperative for achieving accurate analysis,” he notes. “The software package fails entirely, yet key elements were ignored.” Additionally, in this instance, the data was so processed beforehand that Kosmos “only managed to accomplish around 10 percent of the task,” he suggests.

Hamilton commends the team behind Kosmos for addressing his queries and concerns raised on social media. “While this presents a substantial step forward conceptually, specific technical critiques of this study remain: [the] work is still far from zero,” he states.

“We’re entirely open to the possibility that some of the findings we present could be incorrect or flawed. This is part and parcel of scientific inquiry,” says Rodricks. “Nevertheless, the fact that it has garnered such intricate criticism highlights the system’s potential.”

Others express admiration for Kosmos’ performance overall. “This highlights the immense potential for AI to aid scientific research, but we must remain cautious about the independent use of AI scientists,” states Ben Glocker from Imperial College London. “Even though this study showcases some remarkable achievements, we still lack understanding of the failure modes.”

“We believe embracing tools like Kosmos and developing others is essential. However, we should not lose sight of the fact that science encompasses more than just a data-centric approach,” mentions Noah Jansiracusa from Bentley University, Massachusetts. “There is profound thought and creativity involved, and it would be unwise to disregard scientific pursuits that are amenable to automation solely because they are suitable for AI.”

Rodricks himself concedes that Kosmos is best utilized as a collaborator, rather than a replacement for researchers. “It is capable of performing many impressive tasks,” he asserts. “It requires thorough review and validation, and it may not always be entirely accurate.”

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Source: www.newscientist.com

Enormous Bronze Age City Unearthed in the Kazakh Steppe

Aerial image of Seminyarka ruins

Peter J. Brown

A remarkable 140-hectare site, tracing back 3,600 years, has been uncovered in the plains of northeastern Kazakhstan, significantly altering our perception of prehistoric life in Eurasia. This discovery indicates that the Central Asian steppes were once inhabited by Bronze Age societies equal in complexity and connectivity to more prominent ancient civilizations.

“It’s not just a missing piece; it’s like losing half the puzzle,” states Barry Molloy, who obtained his PhD from the University of Dublin, though he was not part of this study.

The Bronze Age was notable for the rise of various prominent cultures, such as the Shang and Zhou dynasties in China, Babylonians and Sumerians in what is now Iraq, and multiple Mediterranean cultures including Egyptians, Minoans, Mycenaeans, and Hittites.

For a long time, the vast steppes of Central Asia were believed to be home to mobile groups residing in yurts or tents. However, Seminyarka, or “City of the Seven Valleys,” appears distinctly different and may have served a crucial role in the distribution of bronze tools among civilizations.

Initially identified in the early 2000s, the site overlooks the Irtysh River, which begins in China’s Altai Mountains, traverses the plains of Kazakhstan, and continues through Siberia to the North Pole.

Mirjana Radivojevic and colleagues from University College London have been documenting the site since 2016. Their findings reveal that Seminyarka included extensive earthworks, likely for defense, as well as at least 20 enclosed dwelling structures, likely mud-brick, and a central monumental building believed to have been used for rituals and governance. The pottery discovered dates the site to around 1600 BC.

Notably, evidence of crucibles, slag, and bronze items suggests that significant areas were dedicated to the production of copper and tin-bronze, an alloy primarily composed of copper with over 2% tin.

Radivojevic noted that the slag’s composition matches tin deposits from the Altai Mountains, about 300 kilometers away.

She mentions that the tin could have been transported by individuals traversing the steppes or via boats on the Irtysh River, or extracted directly from the water. “The Irtysh River was a vital source of tin during the Eurasian Bronze Age, with seasonal flooding aiding in the extraction process,” she explained.

The organized layout of Semyalka contrasts sharply with the dispersed camps and small villages typically associated with nomadic communities in the steppes.

Without thorough excavation efforts, team members indicate they are unsure whether the buildings were constructed simultaneously or over a prolonged period. Dan Lawrence from Durham University states, “However, the design is unmistakably clear. Ordinarily, this suggests contemporary construction, as sequential builds would unlikely align so neatly.”

Given its strategic location along a river near significant copper and tin resources, researchers propose that Seminyarka was not just a hub for bronze production but also an epicenter of trade and regional influence, serving as a crucial linkage in a vast Bronze Age metal network connecting Central Asia with the broader continent.

“The Irtysh River was a heavily trafficked route,” Lawrence remarked. “It’s essentially laying the groundwork for what would become the Silk Road, representing an early form of globalization.”

Radivojevic emphasized that this site reshapes our understanding of Bronze Age societies in the steppe, demonstrating their sophistication comparable to contemporary cultures.

“This indicates they were organized and capable of mobilizing resources and defending their interests,” said Molloy. “The presence of concentrated materials like ores and metals signifies a level of social organization extending beyond local dynamics, fitting into intricate networks that spanned Eurasia, where metals served as critical connections within those networks.”

Cairo and Alexandria, pioneers of science in the ancient world: Egypt

Embark on an unforgettable journey through Cairo and Alexandria, two iconic cities in Egypt that beautifully blend ancient history with modern allure.

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Embracing the Complexities of the Female Body: A Benefit for Everyone

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Women are not simply “smaller men.” For many years, medical research has primarily focused on male rodents, which lack the intricate hormonal cycles found in females, subsequently applying these findings to women as if they were the same. Fortunately, recent decades have seen a growing understanding that this oversight is detrimental to women’s health, often leading to treatments that are less effective for them than for men.

Recent studies on how sex chromosomes influence immune systems reveal another layer to this narrative. Overlooking the intricacies of women’s bodies impacts everyone, not solely women (see “Women’s Immune Systems Are Stronger – Now We Know Why”).

A significant part of the issue arises from averaging effects. While statistical methods can help clarify fluctuations and unveil impactful insights, excessive reliance on them can obscure critical signals. Women generally possess more robust and responsive immune systems compared to the average man, showing longer-lasting responses to vaccines and a lower likelihood of mortality from infections in older age.


Neglecting the complexity of women’s bodies affects everyone, not just women.

However, by combining male and female participants in medical research trials, distinct sex differences in reactions to antiviral medications and vaccines, although better than excluding women entirely, may still be obscured. This could result in men receiving inadequate dosages for effective treatment and women receiving excessive amounts. Furthermore, minimal attention has been given to how these differences impact transgender individuals.

Ultimately, researchers are uncovering how the X chromosome and hormones contribute to these sex-based differences. Insights from this research should help in refining treatments for a variety of conditions, from long COVID-19 to cancer, benefiting everyone. Embracing the complexity of our bodies rather than viewing women as “smaller men” is crucial.

Source: www.newscientist.com

19th Century Math Tips for Taming Bad Coffee

Can mathematics enhance these coffee experiences?

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Picture having a coffee pot that serves two cups. Poor brewing might result in a stronger brew at the bottom than at the top. When pouring from the pot into two cups, the first cup will taste much weaker than the second.

While this scenario is somewhat contrived, there are other situations where a “first is worse” (or “first is better”) approach can lead to inequity.

Consider a football game where everyone has a good idea of the skills of each player. If one team’s captain selects all players first, it creates a significant imbalance in team strength.

This scenario remains unfair even with a simple pick order. For instance, if players can be ranked from 1 to 10 based on skill, if Captain A chooses player 10 first, then Captain B selects player 9, followed by Captain A picking player 8, and so on, the resultant totals are skewed. Captain A’s team ends up with a score of 30 (10 + 8 + 6 + 4 + 2), while Captain B’s team scores only 25 (9 + 7 + 5 + 3 + 1).

So, how can we ensure a fair player selection? The answer lies in a mathematical method from the 19th century. The Tew-Morse series, initially explored by Eugène Plouet in the 1850s and subsequently detailed by Axel Tew and Marston Morse in the early 20th century, advocates for alternating and rotating choices.

In a scenario with selectors A and B, the selection order follows an ABBA pattern. The first pair is in the same order, while the second flips the order. This pattern can be extended, with a repeat that reverses the As and Bs: ABBA BAAB. Further sequences can be created like “ABBA BAAB BAAB ABBA”.

This rotation helps create equity. Using the team selection example again, the totals would be much more balanced: 10 + 7 + 5 + 4 + 1 for one team versus 9 + 8 + 6 + 3 + 2 for the other, leading to totals of 27 and 28.

An iteration of this sequence is also employed in sporting events. For instance, during a tennis tiebreak, one player serves first, followed by each player taking turns to serve two points in an ABBA sequence. This streamlined version of Tew-Morse is often seen as fairer than simple turn-taking. A similar approach is being tested by FIFA and UEFA during soccer penalty shootouts, applying pressure on the second shooter in each pair.

Returning to the coffee pot scenario, the solution is ideal. If you pour half a cup into cup A, then pour two half cups into cup B, and finally add the last half cup back into A, you will achieve equal strength in both cups. Alternatively, you could stir the coffee with a spoon. However, wouldn’t it be more gratifying to tackle such challenges with the aid of mathematics?

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katie steckles – A mathematician, lecturer, YouTuber, and author based in Manchester, UK. She also contributes to New Scientist‘s puzzle column “BrainTwister”. Follow her @stex

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Source: www.newscientist.com