Key Highlights
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A new co-amorphous zinc-indium oxide catalyst can convert CO2 into formate with nearly perfect efficiency and high current, using renewable electricity. This breakthrough could make industrial-scale carbon capture and fuel production much more viable, helping to achieve carbon neutrality.
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Researchers have developed a method that allows robots to open drawers and other common household objects they’ve never seen before, by combining visual predictions with real-time touch and force feedback. This brings us closer to robots that can reliably assist with everyday chores in our homes.
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A new type of acoustic liner for aircraft can reduce aerodynamic drag without sacrificing its ability to absorb engine noise. This advancement could lead to quieter and more fuel-efficient airplanes.
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A study analyzing how two people or a person and a robot carry an object together provides new insights into the biomechanics of shared tasks. This research is crucial for designing safer and more intuitive collaborative robots for factories and warehouses.
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Satellite data combining optical and radar imagery is being used to detect changes on the ground in conflict zones like Ukraine. This technology provides a powerful tool for monitoring damage and humanitarian needs in near real-time, even through cloud cover.
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