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Gamma irradiation has bactericidal effect on many kinds of micro-organisms which certified by many experiments,the micro-organisms contains tunicary viruses,nonencapsulated viruses and all of genetype materials.

大量的实验证实γ-射线辐照对各种微生物均有杀灭作用,包括有包膜和无包膜的病毒及所有的基因型物质。

Objective To find the best quantitative model of an encapsulated micro-bubbles contrast agents among existing models which can be commendably applied in the research of the UCA micro-bubbles' design and it's clinical application.

目的从现有的模型中选出一种造影剂微泡动力学方程,利用它能较好的为造影剂的设计及其临床应用提供具有指导意义的参数。

The second part of this paper presents a CFD-simulation of the performance of straight-walled and curved-walled micro nozzle/diffuser by FLUENT software. Such nozzle/diffusers are mainly used in micro venturi and also applied to valveless micropumps.

而在速度分布部分,当流量为5.338 mg/min时,宽度为150微米的喉部区流速已经高於声速,随后因速度不断增加,空气黏滞力影响了速度分布而产生了速度冲击现象。

The intensity ratio of TO and LO inMCT was observed to be different. Such difference was explained in terms of the different Ramangeometry arrangement.〓. The laser-induced micro-photoluminescence in the range of 1000~5000〓(1.34eV~1.83eV) was found for the first time in LPE MCT epilayer. The center of photoluminescence wasat 2750〓 or 1.62eV and the FWHM of luminescence was 2000〓 or 0.25eV. We assume thatthe photoluminescence is due to recombination of electron from an anion vacancy resonance levelto the top of valance. In addition, new Raman shift was observed at 750〓 in LPE MCTepitaxial film.〓. The laser-induced micro-photoluminescence with quasi-periodic structure was observed forthe first time at room temperature in one of MOVPE MCT epitaxial film samples. The range offluorescence was from 1.46eV to 2.21eV, i.e., 1.73eV above the conduction band edge.

2首次在LPE生长的碲镉汞外延薄膜的显微Raman谱中,在1000~5000〓范围发现了激光激发显微荧光,该荧光的发光范围换算为电子伏特标度为1.34eV~1.83eV,荧光的发光中心大约位于2750〓,即1.62eV,发光的半峰高宽约为2000〓或0.25eV;指出该显微荧光来源于碲镉汞薄膜中的阴性离子空位共振能级的激光激发发光;观察到了碲镉汞外延薄膜中一个新的Raman散射峰,位于750〓位置; 3首次在一块用MOVPE方法生长的〓Te外延薄膜的显微Raman谱中,发现了1.46eV至2.21eV范围并伴随有周期结构的显微荧光峰,该发光峰对应的能带中心位于〓Te材料导带底上方1.73eV,通过研究得出样品在1.46eV至2.21eV范围的显微荧光峰是由于改进 MOCVD 生长工艺,提高了碲镉汞外延薄膜的结构质量所致;通过分析指出该显微荧光来源于外延层中的阴性离子空位的共振能级发光。

The result showed that the micro-nano rough structure fulfilled the Wenzel equation. This micro-nano rough structure could be seen by scanning electronic microscope.

结果表明,含氟碳聚丙烯酸酯乳液疏水涂层可产生符合Wenzel方程的微纳米级别的粗糙面。

Is it print micro-structure etch micro-structure height their that happen layout 3.5μm in 150-240nm to transfer to in a large amount, utilize and etch two times to transfer wetly to technology of printing, but a large amount of models the small and complicated three-dimensional structure.

在研制高发光的二极体,可由鳞片内类似光子晶体的微小结构PCS,所形成高亮度发光二极体。

In view of this issue, the surface survey software in the GeoMountain Acquisition System, through manmachine interactive processing and interpretation of micro VSP, micro logging, mallangle refraction as well as twinwell microlog, realizes surface velocity inversion and establishes an exact surface physical model, thus guiding field excitation as well as receiving and providing reliable data for the static method.

针对该问题,GeoMountain采集工程师表层调查软件通过对微VSP、微测井、小折射和双井微测井等资料的人机交互处理和解释,实现了表层速度反演,建立了准确的表层物理模型,从而指导野外激发、接收,为静校正量计算提供了可靠的数据。

In view of this issue, the surface survey software in the GeoMountain Acquisition System, through man-machine interactive processing and interpretation of micro VSP, micro logging, mall-angle refraction as well as twin-well microlog, realizes surface velocity inversion and establishes an exact surface physical model, thus guiding field excitation as well as receiving and providing reliable data for the static method.

针对该问题,GeoMountain采集工程师表层调查软件通过对微VSP、微测井、小折射和双井微测井等资料的人机交互处理和解释,实现了表层速度反演,建立了准确的表层物理模型,从而指导野外激发、接收,为静校正量计算提供了可靠的数据。

The flow character of microfluid in micro channel is the significant factor in micro injection molding and microfluid control system design.

摘 要:微尺度条件下流体的流动特性是微纳零件制造与微机械装置控制系统设计中需考虑的重要因素。

The results show that some flow characteristics of the microfluid are the same as the micro fluid,but some other flow characteristics are different from the micro fluid.

分析了不同因素如压差、工作流体类型、温度等因素对流体流动特性的影响,既得到了一些和宏观流体相同的流动特性,也得到了微流体所特有的流动特性。

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