China sets world record in superconducting maglev propulsion

Researchers at China's National University of Defense Technology accelerated a tonne-class test vehicle to 700 km/h in just two seconds, setting a world record in superconducting electric maglev propulsion. The achievement positions China as a global leader in ultra-high-speed maglev technology and opens possibilities for hyperloop transport.

Researchers at China's National University of Defense Technology (NUDT) have set a world record by accelerating a tonne-class test vehicle to 700 km/h (435 mph) in just two seconds during a recent experiment. The feat was achieved after a decade of research and development on a 400-meter maglev track, where the vehicle reached its top speed before a controlled stop.

State broadcaster CCTV released footage on Thursday showing the vehicle, resembling a chassis, flashing across the track and leaving a trail of mist. It highlighted breakthroughs in core challenges such as ultra-high-speed electromagnetic propulsion, electric suspension guidance, transient high-power energy storage inversion, and high-field superconducting magnets.

This positions China among the world's leaders in ultra-high-speed maglev technology, offering future options for vacuum tube maglev transport, including hyperloop systems. The electromagnetic acceleration also provides new approaches for aerospace-assisted launches and experimental testing.

The team plans to next focus on ultra-high-speed tube maglev transportation, aerospace equipment testing, and electromagnetic-assisted launch technologies, marking a significant leap in high-power control and extreme acceleration capabilities.

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Tesla Model 3 and Model Y dominate China's EV efficiency test, leading rivals on high-speed track with ranking overlays.
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Tesla Model 3 and Y top China's real-world EV efficiency test

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Tesla's Model 3 and Model Y have secured the top two positions in a recent real-world energy consumption test conducted by Chinese publication Autohome. The vehicles outperformed dozens of rivals under controlled high-speed conditions, highlighting their efficiency advantages. Xiaomi CEO Lei Jun acknowledged the results, pledging to learn from Tesla.

Scientists at ETH Zurich have developed a palm-sized superconducting magnet that produces magnetic fields up to 42 Tesla, matching the power of massive laboratory behemoths. This breakthrough uses commercially available materials and requires minimal power, potentially making advanced magnetic technologies more accessible. The innovation aims to enhance nuclear magnetic resonance techniques for molecular analysis.

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China's BYD has introduced a groundbreaking flash charging technology that adds up to 400 kilometers of range to electric vehicles in just five minutes, directly challenging Tesla's previous dismissals of such rapid charging as impossible. The innovation, powered by megawatt-level systems, is already being deployed in key Chinese cities amid surging EV adoption. This development highlights intensifying competition in the global EV market, where BYD has outpaced Tesla in battery-electric vehicle sales this year.

China on Monday approved two electric sedans equipped with level-3 autonomous driving for public roads, marking the first such allowance. The models, developed by Changan Automobile and BAIC Motor's Arcfox, can operate autonomously under specific conditions in Chongqing and Beijing.

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Researchers in Australia have developed and tested what is described as the world's first proof-of-concept quantum battery, which charges faster as it scales up. Led by CSIRO in partnership with the University of Melbourne and RMIT, the prototype leverages quantum mechanics for rapid energy absorption. Findings were published in Light: Science & Applications.

The People's Liberation Army (PLA) is advancing quantum technology for military applications, including more than 10 experimental quantum cyber warfare tools under development. These tools aim to enhance front-line mapping and gather high-value military intelligence from public cyberspace.

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A team led by Wu Zhenping at Beijing University of Posts and Telecommunications has confirmed in Science Advances that kappa-gallium oxide exhibits stable ferroelectricity at room temperature, enabling it to store data like a memory device while serving as a high-power transmitter. This breakthrough could allow for smaller, more powerful military electronics in Chinese fighters, potentially leaving US F-22 radars two generations behind.

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