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近日,江西师范大学计算机信息工程学院“AI安全与治理”科研团队的论文“Supporting QUIC Data Flows Over Consumer Electronic Devices: A Mobile Edge Computing-Oriented Queuing Delay Control Policy”被消费电子领域国际权威学术期刊《IEEE Transactions on Consu...
近日,哈尔滨工程大学信息与通信工程学院宋明肇副教授在国际顶级学术期刊《自然·电子学》(Nature Electronics)发表了综述论文“Wireless power transfer based on novel physical concepts”。无线能量传输,即无需物理实体连接的电磁能量传输,经典电磁场控制方法往往会牺牲一些效能以增加其他功能。近年来,一些新颖的电磁场调控方法被纷纷提出,...
Imagine an iPad or a Kindle for the blind, with inflatable braille that changes shape under a user’s touch. A Cornell-led collaboration has made a crucial component for such a technology: a haptic arr...
Direct printing of flexible and stretchable conductors provides a low-cost mask-less approach for the fabrication of next-generation electronics. In this work, an electrohydrodynamic (EHD) printing te...
When it comes to efficiency, sometimes it helps to look to Mother Nature for advice – even in technology as advanced as printable, flexible electronics.Researchers at the University of Illinois have d...
An international research team that includes University of Central Florida Professor Enrique del Barco, Damien Thompson of the University of Limerick and Christian A. Nijhuis of the National Universit...
Interest in wearable electronics for continuous, long-term health and performance monitoring is rapidly increasing. The reduction in power levels consumed by sensors and electronic circuits accompanie...
Engineers have developed a technology to cool hotspots in high-performance electronics using the same physical phenomenon that cleans the wings of cicadas. When water droplets merge, the reduction in...
Researchers at the NYU Tandon School of Engineering have pioneered a method for growing an atomic scale electronic material at the highest quality ever reported. In a paper published in Applied Physic...
A device made of bilayer graphene, an atomically thin hexagonal arrangement of carbon atoms, provides experimental proof of the ability to control the momentum of electrons and offers a path to electr...
Graphene has emerged as one of the most promising two-dimensional crystals, but the future of electronics may include two other nanomaterials, according to a new study by researchers at the University...
Researchers who are working to develop wearable electronics have reached a milestone: They are able to embroider circuits into fabric with 0.1 mm precision—the perfect size to integrate elec...
University of Utah engineers have discovered a new kind of 2D semiconducting material for electronics that opens the door for much speedier computers and smartphones that also consume a lot less power...
MIT engineers have designed what may be the Band-Aid of the future: a sticky, stretchy, gel-like material that can incorporate temperature sensors, LED lights, and other electronics, as well as tiny, ...
The tiny transistor is the heart of the electronics revolution, and Penn State materials scientists have just discovered a way to give this workhorse a big boost, using a new technique to incorporate ...

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