electron-optical
- electron-optical的基本解释
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[医]电光的
- 相关歌词
- Basic Cable
- Only Entertainment
- Don't Pray On Me
- Control (HOF)
- Chemical Calisthentics
- Electron Blue
- 相关中文词汇
- 电光的
- 更多网络例句与electron-optical相关的网络例句 [注:此内容来源于网络,仅供参考]
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The results show that an electron efficiency over 27% is predicted for suitable dimensions for the complex cavity and magnetic field coefficient and current and the velocity ratio of the electron beam.
标 签 3 mm波段二次谐波回旋管复合腔多模注波互作用 3mm band Second-harmonic Gyrotron Complex cavity Multiple mode interacting with an electron beam
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Methods The otoconia of 18 guinea pigs were damaged by a high G force (10 Gy 5 min), and their utricle macula were observed by scanning electron microscopy at 1 h, 2 d and 8 d after the damage respectively. The elements of different kinds of otoconia were measured qualitatively and quantitatively by electron probe Xray microanalysis.
给予过载刺激(10 Gy 5 min)造成18只豚鼠耳石的损伤破坏,用扫描电镜(scanning electron microscopy,SEM)分别观察过载刺激后1 h、2 d、8 d时其椭圆囊囊斑,用X射线显微能谱分析技术(electron probe Xray microanalysis,EPMA)测量不同形态类别的耳石元素构成。
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The camera length of electron diffraction in transmisson electron microscopy is one of the main technical parameters in designing electron microscope and the electron diffraction analysis to microcrystal sample. According to Bragg law, the formula of calculating TEM electron diffraction camera length is derived from the research on the ray path of electron diffraction images in TEM and the comparison on electron diffraction with ordinary electronic diffractometer. The difference of physical significance of electron diffraction camera length between TEM and ordinary electronic diffractometer is discussed.
透射式电子显微镜(Transmisson Electron Microcopy, TEM)中的电子衍射相机长度,是电子显微镜设计和对微晶体样品进行电子衍射分析的主要技术参数之一依据布拉格定律,经对TEM中电子衍射成像光路的探讨与研究,并通过TEM与普通电子衍射仪的电子衍射的对比分析,导出了TEM电子衍射相机长度的精确计算公式,阐述了TEM和普通电子衍射仪的电子衍射相机长度所表征的物理意义的区别。
- 更多网络解释与electron-optical相关的网络解释 [注:此内容来源于网络,仅供参考]
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electron accepter:电子受体
electron accelerator 电子加速器 | electron accepter 电子受体 | electron affinity 电子亲和能
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Auger electron:俄歇电子
电子与样品的相互作用会产生多种的信息,基本上分成两大类:一是电子,有二次电子(Secondary electron)、背散射电子(或称反射电子,Back scattered electron);俄歇电子(Auger electron)、透射电子(Transmission electron)、吸收电子(Absorbe
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electron transition:电子转移
电子传递 electron transfer; electron transport | 电子转移 electron transition | 电子传递粒子 electron transport particle