超导电性
- 与 超导电性 相关的网络例句 [注:此内容来源于网络,仅供参考]
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We have synthesized several new cuprates and investigated their structure,structural stability and their s...
我们合成了几种新型的铜氧化物,并对它们的结构、结构稳定性及超导电性进行了研究。
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Study of vortex dynamics of high-temperature superconductors is one of the most important and active fields of superconductivity.
高温超导体的磁通动力学性质的研究是超导电性研究的一个重要方面,具有理论和应用两方面的重要意义。
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High temperature superconductivity is one of the worldwide hot topics because of its importance on basic research...
高温超导电性的研究无论是在基础科学领域还是在潜在的应用前景方面都具有重大意义,因此一直是深受全世界瞩目的研究热点之一。
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Chapter 6: the study about the superconductivity.
第六章:有关超导电性的研究。
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Being at the forefront of physical research, high temperature superconductivity has great prospect in application.
高温超导电性是物理学的前沿课题,具有重大的应用前景。
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In this context, since 70th years three-terminal devices based on non-equilibrium superconductivity have been proposed and realized.
在此背景下,自70年3 -终端设备基于非平衡超导电性有被提出并实现了。
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In chapter 5 and 6, the doping effects on crystal structures and superconductivity of BKBO and BPBO samples are studied.
第五章和第六章分别研究掺杂对BKBO和BPBO样品晶体结构及超导电性的影响。
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In this thesis, we study the superconductivity of MgB_2 system based on the two-band model.
本论文主要研究新型超导体MgB_2的超导电性。
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We believe that the results in this paper is very important and significant for insightinginto the deep features and even origin of high Tc superconductivity.
我们相信这篇论文的结果对于洞察高温超导电性更深层次的特征甚至其机理是非常重要的!
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The recent research progress in effects of doping and irradiation on the superconductivity of MgB2 is reviewed and discussed in this paper.
分别从掺杂和辐照两个方面论述了改善MgB2超导电性的研究进展。
- 推荐网络例句
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Finally, according to market conditions and market products this article paper analyzes the trends in the development of camera technology, and designs a color night vision camera.
最后根据市场情况和市面上产品的情况分析了摄像机技术的发展趋势,并设计了一款彩色夜视摄像机。
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Only person height weeds and the fierce looks stone idles were there.
只有半人深的荒草和龇牙咧嘴的神像。
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This dramatic range, steeper than the Himalayas, is the upturned rim of the eastern edge of Tibet, a plateau that has risen to 5 km in response to the slow but un stoppable collision of India with Asia that began about 55 million years ago and which continues unabated today.
这一引人注目的地域范围,比喜马拉雅山更加陡峭,是处于西藏东部边缘的朝上翻的边框地带。响应启始于约5500万年前的、缓慢的但却不可阻挡的印度与亚洲地壳板块碰撞,高原已上升至五千米,这种碰撞持续至今,毫无衰退。