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

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This New Electronic Skin Can Literally See Your Touch in Real Time

Researchers at the National University of Singapore (NUS) have developed a new type of electronic skin that can sense pressure and directly turn it into visible light . Called eLuminator , the soft and ultrathin device could make tactile information much easier to see and understand, with potential applications ranging from medical care and surgical training to robotics, prosthetics and wearable technology. The research, published in Nature Communications , introduces a different approach to electronic skin. Instead of depending on hundreds or thousands of individual sensing pixels connected to complicated electronics, eLuminator uses a continuous, pixel-free structure that can visualize pressure directly where it is applied. A New Approach to Electronic Skin Electronic skin, or e-skin, is being developed to give machines and wearable devices a sense of touch similar to human skin. These systems can detect pressure, force and contact, making them useful for robots, prosthetic limbs, me...

Scientists Build Yuti, a Simulator That Could Help Detect Alien Megastructures

For decades, astronomers have searched the skies for planets orbiting distant stars. Now, researchers are developing tools that could help them look for something far more unusual: artificial structures built by advanced alien civilizations . Researchers Bhowmick and Khaire have developed a numerical simulator called Yuti , a powerful tool designed to model the way objects of almost any shape block the light of a star. Unlike conventional transit models that mainly focus on spherical planets, Yuti can simulate objects with complex and unusual geometries—including comets, distorted planets, binary stars and hypothetical alien megastructures. The goal is simple but exciting: understand what these unusual objects would look like when they pass in front of a star, and determine whether their distinctive signals could eventually be identified in real astronomical data. From the First Exoplanet to Thousands of Discoveries The discovery of 51 Pegasi b in 1995 , the first exoplanet found orbit...

New Material Changes Colour in Just 0.1 Milliseconds When You Hit It With A Projectile Or Press It

Imagine a soft material that changes its colour almost instantly when you press it. A gentle touch could make it shift from one colour to another, while releasing the pressure would quickly return it to its original state. Researchers have now developed a new photonic hydrogel that can do exactly this—with a response time of only about 0.1 milliseconds . The material, developed by Youfeng Yue and his team , combines the flexibility of a hydrogel with a carefully engineered nanoscale structure that can control how light is reflected. The result is a soft material capable of full-colour switching across a wide visible range , while remaining mechanically stable even after more than 10,000 repeated cycles . The technology could eventually be useful for advanced displays, highly sensitive stress sensors and other optical devices. How Does a Photonic Material Produce Colour? Unlike conventional coloured materials that rely on pigments or dyes, photonic materials can produce colour through t...

You Won't Believe What Happens When A Microscopic Particle Hits This New Weightless Material At Supersonic Speeds

What if a material could be incredibly lightweight yet withstand powerful impacts better than many conventional protective materials? Scientists are now exploring exactly that possibility using a new class of materials engineered at the nanoscale. A research team led by Carlos Portela has demonstrated that three-dimensional nanoarchitected carbon materials can absorb an extraordinary amount of impact energy while weighing far less than traditional materials such as steel, aluminium, PMMA and Kevlar. The discovery could eventually influence the design of lightweight armour, protective coatings and shields for sensitive electronic systems. A New Way to Think About Strong Materials Traditional impact-resistant materials often depend on their bulk, density and mechanical strength. Steel, for example, is widely used because it is strong and can withstand large forces. However, its relatively high weight becomes a major limitation when engineers need protection without adding significant mas...

Virtual Reality Can Make Your Brain Believe You're Walking When You're Actually Sitting Still

For most of us, it seems obvious when we are responsible for an action. If we walk, move our hands, or speak, our brain normally knows that we caused those movements. This ability is known as the sense of agency —the feeling that we are the author of our own actions. But new research shows that this feeling can be surprisingly easy to manipulate. Using immersive virtual reality (VR), researchers demonstrated that people can experience the convincing illusion of walking through a virtual environment while their real body remains seated and almost completely motionless . The study, led by Elena Kokkinara and colleagues , explored how the brain decides whether an action belongs to us and how virtual reality can interfere with that process. How Does the Brain Know an Action Is Ours? When we decide to move, the brain sends motor commands to our muscles. At the same time, it appears to generate an internal prediction of what the movement should feel and look like. Scientists often describe ...

Scientists Build Tiny VR Goggles That Lets Mice See Virtual Worlds—What They Saw Could Change Brain Research

Virtual reality is no longer just a technology for humans. Scientists have now developed a miniature VR headset designed specifically for mice, opening new possibilities for studying how the brain processes vision, movement, learning and fear. Called MouseGoggles , the open-source system was developed by Matthew Isaacson and his team as a compact alternative to traditional virtual-reality setups used in neuroscience. The tiny headset gives head-fixed mice a wide, binocular view of virtual environments while also allowing researchers to track their eye movements and pupil responses. The technology could make animal VR experiments smaller, simpler and easier to reproduce, potentially helping more neuroscience laboratories investigate how the brain responds to complex virtual experiences. Why Do Scientists Use VR With Mice? Understanding how the brain creates behavior is one of the major challenges in neuroscience. Researchers often need to record activity from individual neurons while an...

Scientists Just Discovered Why 3D Printing in Space Can Go Terribly Wrong

Future astronauts may not be able to depend on regular shipments from Earth. For missions lasting months or years—especially crewed missions to Mars—astronauts will need to manufacture tools, replacement parts and other components directly in space. One promising technology is photopolymer-based manufacturing , which uses light to turn liquid resin into solid objects. It requires relatively little energy, needs compact equipment and offers precise control over where materials are cured. But researchers have discovered a major problem: the same chemical reaction that hardens the material can generate enough heat to damage the finished product. A team led by Jonathan Ericson has now investigated this problem through experiments on the International Space Station (ISS), parabolic flights and laboratory testing. Their work has produced a predictive thermal model that could help engineers design manufacturing processes that avoid overheating and defects in microgravity. Why Manufacturing i...