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研究人员在薄膜压缩红外光技术领域取得重要突破,揭示了该技术的三大创新优势,显著提升了实际应用潜力。研究团队证实:新型薄膜可令压缩后的红外光传播距离提升四倍以上;可作用于更宽泛的红外波段;同时具备优异的基材兼容性,能适应不同基底材料与复杂表面结构。
Researchers at Tohoku University have achieved record-breaking energy efficiency for a high-speed memory storage device, ...
KAIST researchers developed "AAcessTalk" an AI-driven Communication Tool bridging the gap Between Children with Autism and ...
Higher maternal selenium levels during pregnancy were associated with a lower risk of streptococcal infections in children, ...
A research team at The University of Osaka has identified a crucial brain region involved in motor learning during reaching ...
SpaceX’s Falcon 9 is a rocket used for both human and nonhuman space missions, and since 2010, the rocket has been launched ...
La Agencia Europea del Medicamento (EMA) ha designado el alopurinol como el primer medicamento huérfano para el tratamiento ...
Nanoplastics are everywhere. These fragments are so tiny they can accumulate on bacteria and be taken up by plant roots; they ...
Through five City Labs, the NBSINFRA project explores how tailored, nature-based strategies can help cities face ...
Using the gene scissors CRISPR and stem cells, researchers at Stockholm University and the UK Dementia Research Institute (UK ...
Researchers at the RIKEN Center for Integrative Medical Sciences (IMS) in Japan have discovered a new way to reduce obesity.
This multidisciplinary study integrates seismic, geological, and socio-economic analyses to elucidate the event's mechanics ...
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