四月gocha

Hero or villain? Opposing arguments for the environmental impact of smartphones

By四月gocha / August 16, 2019

The smartphone industry is often considered to have an increasingly negative impact on the environment. But an opposing argument that smartphones are the heroes, rather than villains, of this story exists as well. How could that be?

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与硝酸硼的突破可以实现更有效的电子产品

By四月gocha / 2019年6月4日

最近的研究可能使硝酸硼纳入下一代电子产品。研究人员已证明了氮化硼的高热导率,并将材料整合到灵活但有效的纳米复合材料中。

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Color-tunable gallium nitride LEDs may light the future

By四月gocha / 2019年5月24日

By controlling the emission states of europium ions in doped gallium nitride, scientists found they can emit various colors of light from a single LED.

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机器人在软手中使用电容传感器来分开可回收材料

By四月gocha / April 23, 2019

麻省理工学院的研究人员开发了一种机器人,可以使用两个柔性硅胶“手”有效地分离可回收材料,以感觉到纸,金属和塑料之间的差异。

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短路?多层陶瓷电容器短缺限制消费电子可用性

By四月gocha / 2019年4月16日

The market for multilayer ceramic capacitors is ballooning with the rise of connected devices in our homes, automobiles, and pockets—but supply is not keeping pace with demand.

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Could our newfound aversion to plastic prove to be a boon to glass?

By四月gocha / April 2, 2019

With a plummeting public opinion of plastic, shifting consumer preferences and new initiatives designed to reduce waste may offer some interesting possibilities for glass packaging.

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材料死胡同?回收周期的解开

By四月gocha / March 26, 2019

尽管在这个星球上丢弃的塑料中有91%从未回收,但玻璃的材料回收状态必须更好……对吗?艰巨的看作者查看了当前的回收状态。

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生物活性玻璃会渗出铜离子以控制感染,刺激骨骼的修复

By四月gocha / March 1, 2019

Researchers developed a multifunctional bioactive glass scaffold that can simultaneously prevent infection, stimulate bone repair, and prompt the body to heal supportive tissues—an intriguing possible all-in-one solution to heal diseased bone.

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All-season athletic apparel? Carbon nanotube-coated textile cools when you’re warm and warms when you’re cool

By四月gocha / 2019年2月22日

Researchers at University of Maryland reported they developed a carbon-nanotube-coated fabric that is the first of its kind to seamlessly transition between keeping you warm in the cold and cool in the heat—by automatically reacting to body physiology.

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