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electron-optical相关的网络例句

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与 electron-optical 相关的网络例句 [注:此内容来源于网络,仅供参考]

Transmission electron microscope samples with ruthenium red electron microscope cytochemistry technique was prepared for detecting the cell-wall polysaccharide and extracelluar polysaccharide of Cladosiphon okamuranus Tokida.

为进行经济海藻枝管藻细胞壁多糖和胞外多糖的超微定位,本文以钌红电镜细胞化学方法制备枝管藻透射电镜样品。

Which are fit for cleanout the rosin, solder, oil, polishing wax etc on the electron accessory, electron, computer line

适用于电子零件、电子、电脑线路、精密机械零件、表壳、表带、电镀前等除松香、助焊剂、油污、抛光蜡的清洗。

Transmission electron microscope, selected area electron diffraction and tilting experiment along the crystal a-axis are applied and two completely different phase compositions and structure are found in the light and dark regions of the ring-banded spherulites.

采用透射电子显微镜、选区衍射和倾斜实验技术确定了PTT溶液浇铸薄膜在较低温度下形成的环带球晶的相结构和组成。

The electron dephasing time is a time scale that how long an electron can stay at its eigenstate.

电子非弹性散射时间是一个度量电子处在其基态时间长短的物理量。

8Ps for native and NaBH〓 chemically modified reaction centers, and the transfer process from H〓 to the final electron acceptor Q〓 occurs in about hundreds of picoseconds. On the other hand, the energy transfer from excited B was obviously slowed down in the pheophytin-exchanged RC. By considering the change of free energy of ion pair P〓Phe〓, it could be expected there might exist alternative pathway of charge separation and electron transfer in pigment-exchanged reaction center. In addition, the influence of acid environment on the ultrafast dynamics of reaction center was also experimentally observed, which shows an evident difference from that of in native RC, and further investigation should be carried out to elucidate the origination.

在色素置换后的反应中心中,以B为起点的能量传递较天然RC的情况明显减慢,约在450fs左右,考虑到置换后的反应中心中P的自由能有所提高以及其仍然保持的光化学活性,这一较慢的能量传递也可能预示着还存在着其它的能量传递通道;另外,还对酸性处理的反应中心中的超快光动力学过程进行了尝试性的研究,发现由于色素分子的聚集以及蛋白环境的改变,BChl分子的激发态动力学过程有着明显不同于天然反应中心的情况。

The product was characterized by scanning electron microscope, transmission electron microscopy, X-ray diffraction, Fourier transform infrared spectroscopy, thermal gravimetric analysis and the contact angle analysis.

采用扫描电镜、透射电镜、 X射线衍射、红外光谱、热重分析和接触角测试对产品进行测定。

The resolution index of electron diffraction in TEM is analyzed. The exactly experimental method is given for demarcating electron diffraction camera length by Gold-monocrystal in TEM.

同时对TEM中的电子衍射分辨率指数进行了分析和讨论,并给出了实际应用金单晶标样精确标定TEM电子衍射相机长度的实验方法。

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。

Electron microscope of the scheme of chart of X ray diffraction that analyses composite material, transmission and photograph of scanning electron microscope make clear: OMMT basically is with coming off condition disperses in PLA matrix, form in order to come off model give priority to, the accept rice that at the same time existence inserts a structure composite material, the affiliation of OMMT makes the drawing section of composite material ruptures to tenacity by brittleness change.

分析复合材料的X射线衍射谱图、透射电子显微镜和扫描电子显微镜照片表明:OMMT主要以剥离状态分散在PLA基体中,形成以剥离型为主、同时存在插层结构的纳米复合材料,OMMT的加入使复合材料的拉伸断面由脆性断裂向韧性断裂转变。

The mechanism of multiple-ionization is analyzed. The highly charged recoil ions come mainly from the Auger effect. The electron-electron interaction comes in to effect as the incident energy increases.

对多重电离的电离机制分析表明:高价态的反冲离子主要来自于俄歇贡献;随着入射能量的升高,电子-电子间的库仑作用也逐渐显现。

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