Scientists Uncover Cause of Inflammatory Bowel Disease Solving Decades-Old Mystery
Source: SciTechDaily
@EverythingScience
For decades, inflammatory bowel disease (IBD) has been treated as a single disorder, even though patients often experience dramatically different symptoms, disease courses, and responses to therapy. A new study suggests there may be a good reason for that: what doctors call IBD could actually be a collection of distinct diseases driven by different biological mechanisms.
Researchers from the University of Oxford’s Nuffield Department of Medicine, Newcastle University’s Translational and Clinical Research Institute, and the Department of Immunology at Cambridge University Hospitals NHS Foundation Trust have identified a key driver of disease in a subset of patients. Their findings, published in the New England Journal of Medicine, reveal an immune malfunction that not only triggers uncontrolled inflammation but also helps explain one of the strongest genetic risk factors linked to IBD.
The team analyzed more than 4,900 people with Crohn’s disease and ulcerative colitis, the two main forms of IBD. They discovered that some patients develop autoimmune responses against interleukin-10 (IL-10), a crucial molecule that normally acts as one of the body’s primary brakes on inflammation. They also found that this immune attack is closely tied to a genetic variant long associated with severe IBD.
Under normal circumstances, IL-10 helps prevent the immune system from overreacting and damaging healthy tissue. But when antibodies block IL-10, this protective mechanism is disabled, allowing inflammation to persist unchecked and potentially fueling disease.
Source: SciTechDaily
@EverythingScience
SciTechDaily
Scientists Uncover Cause of Inflammatory Bowel Disease Solving Decades-Old Mystery
Scientists identified an autoimmune mechanism linked to a major IBD risk gene, opening the door to targeted diagnosis and personalized therapies for thousands of patients.
Ocean monitoring is in trouble: It's up to Europe and Asia to avoid losing sight of the world's deep‑sea ecosystems
Source: Phys.org
@EverythingScience
The world relies on a modest number of countries to keep watch over the ocean. That arrangement is starting to fail. Europe and Asia must now decide whether to let the system unravel, or to take it up together.
Right now, in every ocean basin on Earth, a global network of instruments measures the state of the sea.
Research ships steam along oceanographic transects from surface to seafloor. Anchored buoys watch the tropical oceans for the first signs of El Niño or tropical cyclones and take the pulse of the thermohaline circulation. Some 4,000 autonomous floats sink every 10 days to 2,000 meters before rising to transmit temperature and salinity to ground stations via satellite. Underwater gliders patrol continental margins, and drifting buoys ride the surface in the most remote waters. Hundreds of elephant seals carry miniaturized sensors beneath the polar sea ice...
Together, this network produces invaluable information that allows societies to anticipate and respond to changing ocean and weather conditions, and protect the ocean in return.
It is also far more fragile than most people, and most governments, realize. A new study published in Nature Climate Change has measured for the first time just how fragile the ocean watch network is.
The result is alarming. If observations from a single major contributor, the United States, were withdrawn from the Global Ocean Observing System (GOOS), the errors in our estimate of how fast the ocean is warming would jump by 163%. That is worse than randomly losing 80% of all global ocean data. The reason is geographical: U.S. instruments cover every ocean basin and plug critical gaps that no other nation currently fills.
This is not a theoretical concern. Proposed cuts to National Oceanic and Atmospheric Administration and the National Science Foundation in the United States now threaten exactly this contribution. And the situation is barely better on the other side of the Atlantic.
The pressures are not confined to one side of the Atlantic, nor to the West. In China, scientists and policymakers are working to build a more resilient national contribution to ocean observation, but without the resources the moment requires. The marine monitoring system the world relies on is under strain almost everywhere.
Source: Phys.org
@EverythingScience
Phys.org
Ocean monitoring is in trouble: It's up to Europe and Asia to avoid losing sight of the world's deep‑sea ecosystems
The world relies on a modest number of countries to keep watch over the ocean. That arrangement is starting to fail. Europe and Asia must now decide whether to let the system unravel, or to take it up ...
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19 years ago today: Space Shuttle Atlantis' main landing gear touches down at Edwards Air Force Base in California concluding a two-week assembly mission to the International Space Station.
Sunita Williams, a flight engineer on the Expedition 15 crew, returned to Earth on STS-117 completing 194 days in space, the longest single spaceflight ever by a female astronaut or cosmonaut to that date. This record is now held by Christina H Koch for her 2019–2020 spaceflight (328 days).
Source: @NASAhistory
@EverythingScience
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Why You Flinch When Someone Else Gets Hurt
Source: SciTechDaily
@EverythingScience
Working with researchers from institutions around the world, Nicholas Hedger (University of Reading) and Tomas Knapen (Netherlands Institute for Neuroscience & Vrije Universiteit Amsterdam) investigated one of neuroscience’s biggest questions: how humans experience the world around them.
Their research uncovered a remarkable process in which the brain converts visual information into touch-related representations, helping create the rich, physical reality we experience every day. According to Knapen, “This aspect of human experience is a fantastic area for AI development.”
Why Seeing Someone Get Hurt Makes You Flinch
Imagine preparing dinner with a friend when they accidentally cut themselves. Almost instantly, you may grimace, wince, or even jerk your own hand away.
Those reactions happen because the brain’s touch-processing region, known as the somatosensory cortex, becomes active even though nothing physically happened to you.
But how can simply watching another person trigger the brain’s sense of touch?
To investigate, researchers from the UK, USA, and VU, NIN (KNAW) in Amsterdam turned to an unexpected source of data: Hollywood movies.
Source: SciTechDaily
@EverythingScience
SciTechDaily
Why You Flinch When Someone Else Gets Hurt
Scientists discovered that the visual brain may secretly "feel" what it sees, turning sight into physical experience and helping make empathy possible. Working with researchers from institutions around the world, Nicholas Hedger (University of Reading) and…
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CERN Physicists Discover Third and Final Member of Doubly Charmed Baryon Family
Source: Sci.News
@EverythingScience
“Quarks are basic building blocks of matter,” said Dr. Paula Collins, incoming deputy spokesperson of the LHCb Collaboration. “There are six types of quarks (up, down, charm, strange, top and bottom), which bond into pairs or triplets, known as mesons and baryons respectively.”
“Sixty years ago, as experiments started to reveal the underlying quark structure of matter, researchers began to build theoretical models to classify how quarks can combine into composite particles.”
“Soon, scientists were able to predict the properties of as-yet-undiscovered particles.”
“Included in these predictions were the doubly charmed baryons.”
“These are particles that each consist of two charm quarks and either an up, a down or a strange quark as the third of the triplet.”
“Physicists are particularly interested in this family of particles as the large mass differences between the quarks could provide useful insight into the strong force, which binds quarks together into composite particles.”
“However, the experiments of the time were neither able to produce the doubly charmed baryons, nor did they have sensitive enough equipment to detect them.”
The LHCb physicists discovered the first of these doubly charmed baryons in 2017 and the second earlier this year.
The discovery of Ωcc⁺, the third and final member of this particle family, is based on data collected in 2024 from high-energy proton-proton collisions at the LHC.
These collisions produced the new doubly charmed baryons, which are short-lived, travelling a fraction of a millimeter in the detector before decaying into more stable particles.
The LHCb team traced the tracks left by these particles in the detector back to their points of origin.This revealed the characteristic signature of the new short-lived particle with a distinct mass around four times heavier than a proton.
“This is a moment of beautiful historical significance,” Dr. Collins said. “Out of the 85 composite particles discovered so far at the LHC, these three doubly charmed baryons are unique.”
“They decay by the weak force and live long enough to give measurable flight distances in our experiment.”
Source: Sci.News
@EverythingScience
Sci.News
CERN Physicists Discover Third and Final Member of Doubly Charmed Baryon Family
Physicists with LHCb Collaboration at CERN’s Large Hadron Collider (LHC) have detected the elusive Ωcc⁺ baryon, a particle containing two charm quarks and one strange quark, completing a long-sought family of doubly charmed baryons first predicted over half…
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What if Time Isn’t Fundamental? Physicists Just Tested the Idea in the Lab
Source: SciTechDaily
@EverythingScience
A scientist at the University of Birmingham has created a “mini universe” that could help answer one of science’s most fundamental questions: What is time?
In a study published in Physical Review Research, Professor Giovanni Barontini demonstrates that it is possible to track the passage of time without relying on a clock. The research introduces a model in which a form of time emerges naturally from the behavior of the system being studied.
Some physics theories, including the Wheeler–DeWitt equation, suggest that time is not a fundamental property of the universe. Instead, the universe may exist as a single quantum state that does not change, with particles displaying both wave-like and particle-like behavior. In this view, there is no external clock, and the experience of time arises from relationships between different parts of the system.
Source: SciTechDaily
@EverythingScience
SciTechDaily
What if Time Isn’t Fundamental? Physicists Just Tested the Idea in the Lab
A quantum “mini universe” made from ultracold atoms revealed that time can emerge from entropy changes inside a system, offering experimental insight into one of physics’ deepest mysteries.
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'Youniversalism' measures growing reliance on personal truth
Source: Phys.org
@EverythingScience
It has often been suggested that we now live in a "post-truth" world. People increasingly rely on their own feelings as a yardstick for what is true. Psychologists at the University of Amsterdam (UvA) have now developed the "Youniversalism" scale to allow them to measure people's belief in subjective and experiential truths. The research is published in the journal Personality and Individual Differences.
When emotions and personal beliefs outweigh facts and expertise, it makes it harder to recognize and correct disinformation. "That can have serious consequences," says Bastiaan Rutjens, a psychologist at the UvA and one of the researchers involved. "For example, people could negatively impact their health by following unfounded medical advice, such as we see increasingly on social media."
Researchers call this way of thinking "intuitive epistemology": the idea that you can sense what is true and that everyone's truth is equally valid. "This concept has been described before in the humanities, by Wouter Hanegraaff among others, but until now there was no good way to measure it," says Rutjens.
The new term 'youniversalism'
By combining "you" and "universalism," the new term encompasses the idea that the individual sees themselves as central in constructing and explaining the world around them. The scale has been tested on more than 1,500 people...
Source: Phys.org
@EverythingScience
Phys.org
'Youniversalism' measures growing reliance on personal truth
It has often been suggested that we now live in a "post-truth" world. People increasingly rely on their own feelings as a yardstick for what is true. Psychologists at the University of Amsterdam (UvA) ...
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Scientists Say: Topology
Source: SN Explores
@EverythingScience
Topology is a field of math that focuses on how molding or stretching a shape alters the space it takes up.
In a way, topology is similar to geometry. Both fields study shapes. However, geometry focuses on rigid measurements, such as the length of lines in a triangle. It answers questions like: If I change the length of this line, how will the other lines change? In geometry, the new triangle is considered a different triangle altogether.
But topology does not focus on such rigid measurements. Instead, topology treats the study of shapes like a game. As in a game, a topologist sets out certain rules. Then, they explore what shapes are possible within those rules.
For instance, a rule might be that all the shapes in a certain family can morph into one another without tearing or gluing parts together. You could explore this yourself by squeezing a water balloon. As you watch the balloon warp, you see continuous changes to its shape. Squeezing the middle causes the outsides to bulge. But the balloon doesn’t break or form new connections. So, all the shapes the balloon takes still obey the rule.
A mathematician might say that all the shapes of this balloon belong to the same topological group...
Source: SN Explores
@EverythingScience
Science News Explores
Scientists Say: Topology
This gamelike field of math probes the limits of families of shapes.
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Using Plants, Astronauts Could Create Their Own Medicine
Source: Universe Today
@EverythingScience
When astronauts explore the Moon, Mars, and other destinations far from Earth in the future, they will need to be as self-sufficient as possible. This is an absolute necessity, given that missions operating beyond Low Earth Orbit (LEO) cannot be resupplied within hours. This essentially means that deep-space exploration and outposts will need to produce enough air, water, food, propellant, and other necessities to see to their needs and keep the mission going.
Typically, this falls under the heading of In-Situ Resource Utilization (ISRU), in which local resources are harvested and used to produce building materials and necessities. Otherwise, astronauts need to bring what they need with them, including plants that remove carbon dioxide, produce oxygen, and even provide a source of plant-based protein. According to new research being conducted at the University of California San Diego (UCSD), bringing plants along on the journey could have the added benefit of producing medicines.
The research was led by engineers with the UCSD Aiiso Yufeng Li Family Department of Chemical and Nano Engineering. They were joined by researchers from the UCSD Center for Nano-ImmunoEngineering, the Shu and K.C. Chien and Peter Farrell Collaboratory, the Institute for Materials Discovery and Design, the Moores Cancer Center, the Center for Engineering in Cancer at the Institute of Engineering in Medicine, and more. The interdisciplinary team's findings were published on June 5th in npj Science of Plants.
In their paper, the team described a simple method for growing and repeatedly harvesting pharmaceuticals from plants in microgravity, without destroying the plants or generating large amounts of waste. For more than a decade, Steinmetz and her colleagues have been studying a plant virus called cowpea mosaic virus (CPMV). This virus is commonly known to infect legumes, but Steinmetz's team was focused on its ability to stimulate the immune system to attack cancer cells.
Source: Universe Today
@EverythingScience
Universe Today
Using Plants, Astronauts Could Create Their Own Medicine
A new pharmaceutical production method could allow astronauts on long space missions to "grow" fresh medicines on demand using plants. The work could also bring low-cost pharmaceutical production to resource-limited areas on Earth.
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New Supernova Study Confirms Universe’s Expansion is Still Accelerating
Source: Sci.News
@EverythingScience
In 2025, Yonsei University’s Professor Young-Wook Lee and colleagues shocked the space community with claims that the evidence of dark energy was weakening such that the expansion is no longer accelerating.
They suggested the methods used to measure the Universe’s expansion using supernovae were fundamentally flawed.
...
“What we find is that when we calibrate these supernovae, accounting for different host environments and populations, the evidence for cosmic acceleration remains remarkably consistent.”
To measure the Universe, the authors looked closely at Type Ia supernovae to calculate vast cosmic distances.
The 2025 study had claimed that, as the Universe aged, these supernovae had different maximum brightnesses, tricking astronomers into thinking the cosmos was accelerating when it was slowing.
However, the new study found the error lay in how the age of these stars was estimated.
They proved that the previous findings incorrectly assumed the age of a galaxy was the same as the age of the star that exploded.
They also said the 2025 paper failed to account for the mass of host galaxies, a standard correction used in modern cosmology to prove accuracy.
“Challenging accepted theories and observations is fundamental to science,” said University of Southampton’s Professor Mark Sullivan, co-author of the study.
“This is how progress is made. Although this idea did not turn out correct, it has opened up new ways of thinking about how supernovae explode and how we can measure dark energy more accurately.”
Source: Sci.News
@EverythingScience
Sci.News
New Supernova Study Confirms Universe’s Expansion is Still Accelerating
A fresh analysis of Type Ia supernovae overturns a controversial 2025 claim that cosmic expansion is slowing.
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This Is the Scariest Place in The Universe
Source: Kurzgesagt
@EverythingScience
Most of the universe is not made of stars, galaxies, or beautiful glowing nebulae. Instead, the majority of it is what seems to be vast, silent emptiness. Huge cosmic voids stretching hundreds of millions of light years across, containing almost nothing at all. But these dark regions are not just empty space. They are dynamic structures that grow, merge, and shape the entire architecture of the universe.
What exactly are cosmic voids and how did they form? What makes them so strange, and what role might they play in the future of the universe?
Source: Kurzgesagt
@EverythingScience
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Scientists improve nearly every aspect of prime editing, moving it closer to treating more genetic diseases
Source: Phys.org
@EverythingScience
Prime editing can potentially repair the vast majority of known disease-causing human mutations, but the technology, first developed in 2019, has not yet been widely used in the body, or in vivo, to treat genetic disease. The only clinical application of prime editing that has been publicly announced uses the technology to edit cells outside the body before transplanting them back into the patient.
Now, scientists from the David Liu lab at the Broad Institute have addressed bottlenecks that previously impeded the use of prime editing in animals and human patients. In two studies published last month in Nature Biotechnology and one published today in Nature Nanotechnology, the team described multiple changes to key components of the prime editing system and also optimized prime editing for delivery with lipid nanoparticles, which deliver genetic medicines to tissues in the body and are already used in several approved therapeutics. These advances together increase the efficiency and potency of prime editing and improve its potency when delivered into the body, a key requirement for in vivo prime editing therapeutics.
"Collectively, these three papers improve the overall efficiency and clinical relevance of prime editing, which we hope will make the technique more useful both for research purposes and for therapeutic clinical applications," said Liu, who is also the Richard Merkin Professor and director of the Merkin Institute for Transformative Technologies in Healthcare at Broad, the Dudley Cabot Professor of the Natural Sciences in the Faculty of Arts and Sciences at Harvard University, and a Howard Hughes Medical Institute investigator.
Source: Phys.org
@EverythingScience
Phys.org
Scientists improve nearly every aspect of prime editing, moving it closer to treating more genetic diseases
Prime editing can potentially repair the vast majority of known disease-causing human mutations, but the technology, first developed in 2019, has not yet been widely used in the body, or in vivo, to treat ...
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How reading shapes and enhances our cognitive activity
Source: Phys.org
@EverythingScience
Smartphones, online learning, generative AI: The way we read has changed more in the last decade than in the previous century. So what do we actually know about what reading does for the mind? In his new book, Falk Huettig, senior investigator at the Max Planck Institute for Psycholinguistics, brings together research spanning psychology, linguistics, neuroscience and education to answer that question. The result is a systematic account of how literacy reshapes memory, attention, language processing and reasoning—and even abilities readers might not expect, like face recognition.
Cognitive enhancement is having a moment, with people turning to better sleep, exercise, nutrition, stress management and tools like caffeine or neurostimulation in search of a sharper mind. According to Huettig, one of the most powerful enhancers of all has largely flown under the radar.
"One of the most powerful cognitive enhancers, with broad and increasingly well-documented effects, is rarely emphasized in these discussions: the ability to read," he says.
An unexpected finding: Reading and face recognition
One of the more surprising threads in the book concerns face recognition. A long-standing idea in cognitive neuroscience holds that because reading is a relatively recent cultural invention, the brain has no dedicated reading network of its own, so literacy training has to borrow space from older visual systems, including the one used for recognizing faces.
"Neuroscientists have proposed that the development of reading expertise may therefore partially displace or encroach upon the face recognition network in the brain," Huettig explains. "This postulated cortical 'invasion' could result in a measurable decline in face or object recognition performance, as neural resources are reallocated to support the newly acquired reading skill."
Huettig's own research points the other way.
"Our alternative perspective challenges the idea of destructive competition by proposing that learning to read may actually enhance sensitivity to faces and other visual object categories, rather than intrusively co-opting existing face recognition territory," he says.
In studies conducted in India comparing literate and illiterate adults, his team found that "such co-opting leads to functional fine-tuning, where older networks are not diminished but rather adapted and even enhanced. We confirmed this explanation in behavioral studies: Literate people were better at face recognition than illiterate people."
A continuum, not a switch
The book argues that literacy keeps developing long after someone learns to decode text.
"Reading proficiency does not end once a reader can fluently decode a writing system," Huettig says. "Avid readers continue to automatize and refine these subprocesses and their coordination, training both lower- and—with increasing practice—higher-level cognitive functions. As a result, literate people come to 'see' the world through a fundamentally different lens than those who are illiterate or less literate."
Few people, he notes, ever reach the very top: "Only a small proportion of individuals reach the highest levels of critical reading in international assessments such as the PISA tests."
Content matters, too.
"It matters a great deal what people read," Huettig says. "Reaching these advanced levels of literacy requires regular engagement with sophisticated texts, along with the development of strong critical thinking and reasoning skills."
Source: Phys.org
@EverythingScience
Phys.org
How reading shapes and enhances our cognitive activity
Smartphones, online learning, generative AI: The way we read has changed more in the last decade than in the previous century. So what do we actually know about what reading does for the mind? In his ...
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Today, ESA's Euclid mission revealed the largest, most detailed photo ever taken of our galaxy's centre in visible light 🙌
This video takes you on a journey across this region.
Turn up the volume and enjoy our galactic centre 🤩
Find out more about this image 👉 esa.int/Science_Explor…
Source: @esascience
@EverythingScience
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Ancient Ice Man Still Hosts Mysterious Cold-Loving Organisms, Study Finds
Source: SciTechDaily
@EverythingScience
For more than 5,000 years, Ötzi the Iceman has carried an invisible community of microbes through ice, time, and modern museum preservation. Now, scientists have taken the most detailed look yet at this microbial ecosystem, separating the microorganisms that accompanied Ötzi in life from those that arrived after his death and during decades of conservation.
By analyzing a wide range of samples with multiple genetic and microbiological techniques, the researchers identified traces of bacteria from Ötzi’s original gut microbiome in internal tissues. They also uncovered an unexpected group of cold-adapted yeasts that likely originated in the glacier environment and have remained associated with the mummy to this day.
The findings, published in the journal Microbiome, offer new insights into the long-term preservation of ancient remains and the remarkable survival strategies of microorganisms in extreme cold.
The investigation was extensive. Researchers analyzed surface ice, meltwater collected from inside the mummy, and numerous swab samples. They also incorporated data from earlier studies of intestinal tissue and stomach contents. To better understand environmental influences, the team examined a soil sample from the discovery site that had been collected and frozen during Ötzi’s recovery in 1991.
Source: SciTechDaily
@EverythingScience
SciTechDaily
Ancient Ice Man Still Hosts Mysterious Cold-Loving Organisms, Study Finds
A new study untangles the complex microbial history of Ötzi the Iceman, revealing which microorganisms originated during his lifetime and which arrived long after his death.
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Scientists Capture Immune Cells Eating Live Cancer Cells for the First Time
Source: SciTechDaily
@EverythingScience
Scientists at the Garvan Institute of Medical Research have, for the first time, recorded immune cells known as the body’s “housekeepers” actively attacking and consuming live melanoma cells. The discovery could reshape how researchers approach treatment for melanoma, one of Australia’s most common and deadliest cancers.
The study, published in the Journal of Experimental Medicine, identifies a previously underappreciated group of immune cells called macrophages. These cells gather around the edges of melanoma tumors, where they continuously engulf cancer cells and help slow tumor growth.
“This is the first time anyone has captured a macrophage attacking and engulfing a live cancer cell in real time,” says Dr. Yuki Keith, first author of the research. “We always suspected macrophages were doing more than we gave them credit for – now we have the video footage to prove it. Studying this in a living system is crucial because it is more representative of what happens in real life, showing the complexity of the immune system and paving the way for the treatments of the future.”
Source: SciTechDaily
@EverythingScience
SciTechDaily
Scientists Capture Immune Cells Eating Live Cancer Cells for the First Time
Scientists discovered and filmed macrophages actively destroying live melanoma cells, a finding that could improve immunotherapy and inspire new cancer treatments.
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Scientists Finally Uncover Why Solid-State Batteries Short-Circuit
Source: SciTechDaily
@EverythingScience
Every time a smartphone is charged or an electric vehicle is plugged in, billions of lithium ions move through a battery to store energy. Future devices could perform far better with solid-state batteries, a technology that promises longer-lasting phones, safer energy storage, and electric vehicles capable of traveling much farther on a single charge. Yet one stubborn problem has kept these batteries from reaching the mainstream: tiny structures called dendrites that can destroy a battery from the inside.
Now, researchers at the Max Planck Institute for Sustainable Materials (MPI-SusMat) have uncovered exactly how these microscopic defects trigger battery failure. Their findings, published in Nature, provide new insight into one of the most important challenges facing next-generation energy storage.
Unlike conventional lithium-ion batteries, which rely on a liquid electrolyte to move ions between electrodes, solid-state batteries use a solid ceramic electrolyte. Eliminating the liquid component offers several advantages. Solid-state designs can potentially store more energy in the same amount of space, reduce fire risks, and remain functional for longer periods.
The technology has attracted enormous interest from automakers and electronics manufacturers because it could dramatically improve battery performance. In theory, smartphones could go days without charging, while electric vehicles could achieve driving ranges up to three times greater than current models.
Source: SciTechDaily
@EverythingScience
SciTechDaily
Scientists Finally Uncover Why Solid-State Batteries Short-Circuit
Researchers have uncovered a critical mechanism behind battery failure in solid-state batteries, offering new insights that could help unlock safer, longer-lasting energy storage technologies.
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Businesses often row back on ethics when times get tough. Here's how technology can keep them on track
Source: Phys.org
@EverythingScience
Five carmakers are involved in a case at the High Court in London over claims that they cheated on emissions tests. A decade ago, the "dieselgate" scandal broke, eventually forcing Volkswagen to pay billions of euros in fines and settlements. These carmakers (Mercedes, Ford, Peugeot/Citroën, Renault and Nissan) have all faced accusations that selling cars was more important to them than their environmental responsibilities. They all deny the allegations.
Back in 2015, all United Nations member states adopted 17 sustainable development goals (SDGs) as a global blueprint to end poverty and inequality, protect the planet and promote peace by 2030. Central to this agenda is the pledge to "leave no one behind", affirming that progress in any area matters only if it reaches the world's most vulnerable communities.
The allegations against the carmakers sit within this wider pattern. When firms treat a crisis—in this case, environmental regulations—as justification for bending the rules, sustainability stops being a real commitment and becomes a fair-weather promise.
The same logic can appear in geopolitics, but with far more devastating consequences. At the extreme end, conflict shows how quickly the SDG blueprint can unravel.
Source: Phys.org
@EverythingScience
Phys.org
Businesses often row back on ethics when times get tough. Here's how technology can keep them on track
Five carmakers are involved in a case at the High Court in London over claims that they cheated on emissions tests. A decade ago, the "dieselgate" scandal broke, eventually forcing Volkswagen to pay billions ...
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Two close-up views of Ganymede, the largest moon in our solar system, taken 25 years apart!
30 years ago on June 27, NASA's Galileo spacecraft performed humanity's first-ever flyby of Jupiter's icy moon Ganymede—revealing that it had a magnetic field. Galileo flew within 519 miles (835 km) of Ganymede.
Nearly 25 years later, in June 2021, Juno made the next closest approach to the surface of this fascinating moon reaching a distance of 645 miles (1,038 km), detecting salts and organic compounds in its icy crust.
1. Galileo's view, June 1996
2. Juno's view, June 2021
Source: @NASAhistory
@EverythingScience
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