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

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World’s First 3D-Printed Concrete Bridge Opens a New Chapter in Sustainable Construction

A small cycling bridge in the Netherlands has made a big mark in construction history by showing how 3D printing can make infrastructure more sustainable, efficient and innovative. The construction industry is entering a new technological era, and the Netherlands has taken an important step forward. In 2017, the Dutch town of Gemert became home to what was described as the world’s first 3D-printed concrete bridge designed for bicycles . Although the bridge is only about eight metres long, its construction represents a major development in the way bridges and other infrastructure could be built in the future. Instead of using traditional moulds and pouring large amounts of concrete into them, the structure was created layer by layer using a 3D printer. The project demonstrated that advanced digital manufacturing can be applied not only to small objects but also to real construction projects. A Bridge Built Layer by Layer The cycling bridge was made using approximately 800 layers of prin...

Steel Slag Was a Waste Problem. Scientists Just Turned It Into a Climate Solution.

The cement industry is essential for modern construction, but it also has a major environmental cost. Cement production accounts for about 8% of global carbon dioxide emissions, making it one of the important industrial contributors to climate change. As global demand for construction materials continues to rise, finding cleaner alternatives to conventional cement has become increasingly important. A recent study led by Bingyang He and his team presents a promising approach: turning steel slag and fly ash—two major industrial wastes—into a high-performance cementitious material. Their strategy uses a simple pre-hydration process to overcome the major problems that have limited the use of steel slag in construction. Why Steel Slag Matters Steel slag is a solid waste produced during steel manufacturing. It is generated in very large quantities, yet a significant portion remains unused and is often stockpiled. Globally, more than 190 million tonnes of steel slag may require effective ut...

Scientists Just Taught 3D Printers to Build Materials Like Nature Does

Nature has a remarkable way of creating materials that are both strong and highly functional. Bones, bamboo, and wood are excellent examples. Their internal structures are not uniform; instead, they change gradually from one region to another. These changes, known as gradient structures , allow natural materials to perform different functions in different areas. Now, researchers led by Huawei Qu have introduced a new 3D printing strategy that could make it much easier to manufacture such complex structures. Called filament diameter-adjustable 3D printing (FDA-3DP) , the approach allows conventional extrusion-based 3D printers to create one-dimensional (1D), two-dimensional (2D), and three-dimensional (3D) gradient structures by continuously changing the diameter of printed filaments. The development could open new possibilities in tissue engineering, flexible electronics, advanced materials, soft robotics, and other fields where precisely controlled structures are important. Why Gradi...

This New Smart Concrete Can Generate It's Own Electricity. Heres How

Concrete has been one of the most important materials in modern civilization. It is used in buildings, bridges, roads, tunnels, dams, and countless other structures. But conventional concrete is mainly designed to carry loads and withstand environmental conditions. It does not normally generate electricity, sense its own condition, or adapt mechanically to changing forces. A new research concept could change that. Researchers led by Kaveh Barri have developed a concept called nanogenerator-integrated mechanical metamaterial concrete . The approach combines lightweight mechanical structures with energy-harvesting technology to create concrete that is not only mechanically tunable but can also generate electrical power and provide sensing capabilities. The research points toward a future in which concrete could become an active component of smart infrastructure rather than simply a passive construction material. Combining Two Advanced Technologies The key idea behind the technology is t...

These Stars Have Magnetic Fields So Powerful They Can Change Their Own Crust

Magnetars are some of the strangest and most powerful objects in the Universe. They are a special type of neutron star with magnetic fields far stronger than anything scientists can create on Earth. These extreme magnetic fields are known to produce powerful bursts of X-rays and gamma rays. Magnetars have also been linked to some fast radio bursts, which are extremely short but powerful flashes of radio waves from deep space. Now, researchers Servais and Chamel have found that the strongest magnetic fields may do something even more surprising: they can change the structure of a magnetar's crust. Their study shows that magnetic fields can affect not only charged particles such as electrons, but also free neutrons. When the magnetic field becomes extremely strong, the spins of free neutrons become organized. This process, called neutron spin polarization , changes the boundary between the different layers of the magnetar's crust. The discovery could help scientists understand ma...

New AI Is Teaching Flying Robots to Perch on Walls Just Like Animals (Flies, Geckos & Bats)

In nature, landing is far more than simply touching the ground. Many animals can land and remain attached to surfaces that would be extremely difficult for conventional aircraft to use. Flies can attach themselves to ceilings, geckos can stabilize themselves when landing on tree trunks, and bats can settle onto cave ceilings. These abilities allow animals to move, rest and survive in environments filled with irregular surfaces. Flying robots, however, face a very different challenge. Most drones are designed to land on relatively flat, horizontal surfaces. Landing on a vertical wall requires precise control of speed, pitch angle, forces and timing. A small error during the maneuver can cause the robot to fall or become damaged. A new machine-learning-based approach developed by Shen and colleagues aims to change this. The researchers have developed a framework that can predict whether a flying robot equipped with spines will successfully perch on a vertical wall . More importantly, the...

Scientists Finally Discovered What Happens When Lightning Strikes Volcanoes Ash

Volcanic eruptions are among the most powerful natural events on Earth. They can send huge clouds of ash high into the atmosphere, where electrical charges build up and produce spectacular flashes of lightning. But volcanic lightning may do more than create a dramatic display. New experimental research suggests that these lightning strikes can rapidly melt volcanic ash, change its shape, break particles apart, and even remove important chemical elements. A study by Mueller and colleagues has investigated this process in laboratory experiments designed to reproduce the extreme heating caused by volcanic lightning. Their findings provide new evidence that lightning can actively transform volcanic ash during an eruption, potentially influencing both the behavior of ash clouds and atmospheric chemistry. Volcanic Lightning: More Than a Spectacular Display Lightning in volcanic ash plumes occurs when ash particles, gases and other materials interact and become electrically charged. As partic...