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Scientists Discover Way to Send Information into Black Holes Without Using Energy

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This New Technology Could Make Screens Fold 25 Times & Turn Into 3D Shapes

Imagine a screen that can fold into a tiny shape, expand dramatically, and even transform from a flat sheet into a 3D structure —without losing its ability to work. That sounds like science fiction, but researchers are developing electronics that can do exactly this by combining the ancient art of origami with flexible electronic materials. A team led by Dohyeon Gong has developed a new type of fiber-reinforced origami electronics designed to survive the repeated folding, unfolding, stretching and geometric transformations that normally damage electronic devices. The key innovation is a specially designed flexible hinge made from an electronic composite containing PEDOT:PSS, PDMS and embedded nylon fibers . Together, these materials allow the hinge to remain flexible during folding while resisting the pulling forces that occur when the structure expands. The result is an electronic system that can repeatedly change its shape while maintaining both its mechanical strength and electri...

Astronomers Discover the Lightest Double Neutron Star System Ever Found

Astronomers have discovered an extraordinary pair of neutron stars locked in an extremely tight orbit—and together, they have the lowest combined mass ever measured for a confirmed double neutron star system . The system, known as PSR J1856−0039 , was discovered using China's massive Five-hundred-meter Aperture Spherical radio Telescope (FAST). Its compact 2.36-hour orbit also makes it an exceptional laboratory for testing Einstein's theory of general relativity and studying some of the densest matter in the universe. The findings, published in Physical Review Letters , could provide new clues about how neutron stars form, how binary systems evolve and what happens when these extraordinary objects eventually collide. A remarkable pair of dead stars Neutron stars are the incredibly dense remnants left behind after some massive stars explode as supernovae. Although they are typically only about the size of a city, they can contain more mass than the Sun. Some neutron stars are pu...

Why Astronauts Get Constipated in Space: Blood Tests Reveal a Hidden Change in the Gut

For astronauts, life in space is filled with challenges that are easy to imagine—radiation, muscle loss, bone weakening and the psychological stress of living far from Earth. But one surprisingly common problem is much more ordinary: constipation . Now, new research from the University of Copenhagen, carried out in collaboration with NASA, may have uncovered an important clue about why digestion changes in space. Scientists analyzed blood samples from 52 astronauts who spent months aboard the International Space Station (ISS). Their results suggest that within just a few weeks of entering space, the activity of gut bacteria changes significantly. In particular, bacteria appear to shift toward breaking down more protein . This discovery could help explain why astronauts frequently experience constipation—and it may become increasingly important as humans prepare for longer missions to the Moon and Mars. The Gut Changes Soon After Leaving Earth The human digestive system depends on a co...

What If Your Walls Could Store Electricity? Scientists Are Making It Possible

Imagine a building where the walls, floors and other structural elements do more than simply support the building. What if some of the concrete itself could store electricity generated by solar panels and release it when needed? Scientists are moving closer to this idea with a new type of cement-based supercapacitor that can store and rapidly release electrical energy while maintaining mechanical strength similar to conventional concrete. The research, published in ACS Nano , introduces a 3D-printed cement-based energy-storage device designed to become part of the structure itself. The technology could eventually help buildings store renewable energy without relying entirely on large, separate battery systems. Turning Concrete Into an Energy-Storage Device Modern buildings increasingly use renewable energy technologies such as rooftop solar panels. However, generating electricity is only part of the challenge. Solar panels produce energy mainly when sunlight is available, while buildi...

This “Wormhole” Isn’t in Space—Scientists Watched One Form on Earth

Granular materials such as sand, sediment, grains and tiny particles may look simple, but when they begin to flow, they can display surprisingly complex behaviour. Add flowing water to the system, and things become even more interesting. In a new experimental study, Miles Morgan and his team investigated what happens when water is used to drive a dense bed of grains downward through a narrow vertical silo . They discovered several different flow patterns—including finger-like structures, porous flow and conventional silo flow—but one behaviour stood out: the sudden formation of straight, wormhole-like channels through the granular material. Once these channels appear, they can rapidly grow toward the outlet, creating a preferred pathway through which water and grains move while much of the surrounding material is bypassed. The discovery could help scientists better understand fluid-driven sediment transport and processes occurring in environments ranging from industrial systems to und...

What Happens to Astronauts’ Bones After 90 Days in Space? Scientists Have an Answer

Space exploration is entering a new era. Future astronauts are expected to spend months or even longer away from Earth as space agencies prepare for missions to the Moon and eventually Mars. But while rockets, habitats and life-support systems continue to improve, scientists are paying increasing attention to another challenge: what happens to the human skeleton during long periods in space? A new study published in Mayo Clinic Proceedings has found that astronauts who completed spaceflights lasting more than 90 days experienced higher rates of hip fractures than astronauts after shorter missions and people who had never traveled to space. The finding highlights an important concern for the future of human space exploration. Astronauts are generally selected for excellent physical health, but spending extended periods in microgravity can cause changes inside the body that may not be obvious when they return to Earth. Why Does Spaceflight Affect Bones? On Earth, our bones constantly r...

Moon and Mars Gravity Could Change How Astronauts’ Immune Cells Move Inside the Body

As humanity prepares for a new era of lunar exploration and future missions to Mars, scientists are studying a critical question: How will reduced gravity affect the human immune system? Astronauts will not experience Earth’s normal gravity on the Moon or Mars. The Moon has only about 16% of Earth’s gravity (0.16 g) , while Mars has about 38% (0.38 g) . Although these environments are not completely weightless, researchers are finding that even partial gravity can change how immune cells interact with blood vessels. A new study led by Yu Du and colleagues investigated how immune cells behave under lunar and Martian gravity. The researchers discovered changes in immune-cell movement, attachment to blood-vessel cells, adhesion molecules and the internal structure of endothelial cells—the cells that line our blood vessels. The findings suggest that partial gravity could influence the body’s ability to control inflammation and move immune cells through blood vessels. Why Immune Health Mat...