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Abbe's theory of image formation in the microscope leads to fundamentally improved microscopes.

1872年阿贝先生的显微镜成像理论使得显微镜有了根本性的提高。

The dispersed states of ZnO, CaCO3, argil, clay, carbon black and carbon white in SBR matrix were characterized by electronic microscope TEM and SEM. To make a comparison with the above, the dispersed states of clay/rubber nanocomposites were studied and compared with that of clay/PMMA nanocomposite. According to TEM and SEM photos, there are several levels of dispersed structure with different dimension.

将透射电子显微镜与扫描电子显微镜结合在一起,系统观察了氧化锌、碳酸钙、陶土、粘土、炭黑、白炭黑等填料在丁苯橡胶中的分散状态,也考察了粘土/橡胶纳米复合材料中粘土晶层的分散情况。

The deflagration products of emulsion explosives were characterized by scanning electron microscopy, powder X-ray diffraction and transmission electron microscopy to observe the structures.

并用扫描电子显微镜观察了乳化炸药爆燃产物的形貌,通过X射线粉末衍射仪和透射电子显微镜确定了爆燃产物的结构。

In the paper four aspects have been studied:(1) tree and distributing, belonging to the correlative contents of the dendrology,(2) the macroscopical character in virtue of magnifier and entitative microscope observing the three sections (cross section, radial section and tangential section );(3) the microcosmic character, in virtue of light microscope observing slices.

本文从以下四个方面进行了研究:(1)树木及分布,树木学方面相关的内容;(2)木材宏观特征,借助扩大镜和实体显微镜,在木材的三个标准切面,即横切面、径切面和弦切面上进行观察;(3)木材微观特征,借助光学显微镜观察切片。

Scanning Tunneling Microscope/Scanning Force Microscope with atomic resolution were used to observe and measure the feature and the size of the damage in conductor and insulator, and also the relationship with the energy deposition of incident ions in solids.

分别利用具有原子分辨能力的扫描隧道显微镜/扫描力显微镜观测了离子轰击导电和绝缘材料产生孤立损伤的形态、大小。

Employ, soft x ray microscopes be to not happen ago match the highest resolution

射线显微镜永远比不上自动显微镜估计具有的很高分辨力。

Employ, soft x ray microscopes will not happen before match the highest resolution

射线显微镜永远比不上电子显微镜估计具有的最高分辨力。

The bovine shank bone tissue was ablated with pulsed CO2 laser in vitro, electronic drill was used as a control group. Then the morphology of bone tissue was examined by using stereomicroscope and scanning electron microscope. The crater depth was measured with optical coherence tomography.

选用脉冲CO2激光对离体牛胫骨组织进行消融,以电钻作为参照组,体视显微镜和扫描电子显微镜观察骨组织弹坑的形态学变化,光学相干层析成像技术测量弹坑消融深度。

The reasonable structure arrangement of KBA microscope is analyzed. The theoretical basis is provided for the design and manufacture of KAB microscope.

最后分析KBA显微镜结构安排的合理性,从而为KBA显微镜设计和加工提供理论依据。

In this study, we used poly L-latcide, poly DL-latcide-co-glycolide 75:25 (PLGA7525) and poly DL-latcide-co-glycolide 50:50 (PLGA5050) during citric acid inducing ammonium bicarbonate gas forming process to form porous polymer film, and rolled the porous polymer film to make nerve conduits with pores and multi-layered. Electron Spectroscopy for Chemical Analyzer and Attenuated Total Reflectance – Fourier-Transform Infrared Spectrometer were employed for determining elements' functionabilities and chemical compounds. Charge Coupled Device camera and Scanning Electron Microscope were employed for macroscopic and microscopic morphologies and structural observation. Differential Scanning Calorimetry was employed for measuring glass-transition temperature. Nano-indentation system was employed for measuring elastic modulus and hardness. Biodegradation and water absorption ratios were measured to analyze their chemical properties and SEM was employed for microscopic morphology of the tested nerve conduit.

本研究将以聚乳酸、聚乳酸-聚甘醇酸共聚合物(75:25)、聚乳酸-聚甘醇酸共聚合物(50:50)做为研究材料,以柠檬酸诱发碳酸氢铵发泡之气泡成型法制作具有相连通孔隙之高分子薄膜,再将高分子薄膜卷制成特殊多层的导管,制作具有多层孔隙之新型神经再生导管,以电子能谱化学分析及减弱式全反射-傅立叶转换红外线光谱分析进行成份分析及化学元素测定;以电荷耦合元件摄影机、扫瞄式电子显微镜进行多层孔隙型神经导管巨观及微观形态结构观察;以示差扫瞄热量量测分析玻璃转换温度、奈米三维量测弹性模数及硬度;以及进行降解性质测定,并以扫瞄式电子显微镜进行降解后之导管微观结构形态观察。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。