1、

The Development of automatic Deviation-correcting System for vaccum tubes

保温管自动纠偏系统的研制

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2、

RNA samples are fixed onto the nylon strips, and then hybridized with the probe and the hybridization signal is detected in the 2ml microtube.

RNA样品被固定到膜条上之后,在2ml离心管中与探针杂交,然后检测杂交信号。

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3、

The results indicate that ZnO hexagonal prism microtube has negative temperature coefficient and excellent properties of gas sensitivity in 200 ℃, which is lower than ordinary ZnO thin film.

实验结果表明ZnO六棱微米管在200℃左右对乙醇、氢气等有良好的气敏性能,且较薄膜型ZnO气敏传感器的工作温度(约450℃)大大降低。

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4、

Evaluation on flow boiling patterns in an opaque microtube by infrared Radiometry

利用红外温度测量方式预测微管内流动沸腾流型

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5、

Effects of axial heat conduction in the wall on convective heat transfer in microtube have been studied analytically.

本文通过数值解析的方法研究了考虑壁面轴向导热时微细管内的对流换热。

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6、

Conclusion Gelatin liquefaction tests performed by charcoal powder gelatin microtube methods can get result rapidly and clearly, and can save reagents.

结论采用炭末明胶微量管进行明胶液化试验反应快,结果明了便于观察,试剂用量少,体积小且能室温长期保存,优于营养明胶法,X线胶片法和常量炭末明胶法。

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7、

Application of charcoal powder microtube method in the identification of bacteria

炭末明胶微量管在细菌鉴定中的应用

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8、

For laminar microtube flow, solutions using RVM would induce higher flow resistance and thus reduce the volume flowrate.

层流微小圆管中,采用RVM模式的数值解会使流动阻抗降提高因而降低体积流率;

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9、

A Visual Experimental Study on Surface Temperature Field in Stainless Steel Microtube

微型钢管外表面温度场可视化实验研究

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10、

Features of electron density and time-resolved X-ray spectra from lateral jet nozzle of Mg microtube target

Mg微管靶喷口电子密度及X射线谱的时间分辨特性

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11、

Experimental study on axial wall heat conduction for steel microtube under forced convection

对流换热条件下微钢管壁面轴向导热的实验研究

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12、

Manipulating and amending the field photos, the exact temperature distribution along wall of the microtube is gained and the quantity of the axial conductive heat is also obtained.

经过图像处理及修正后,得到较为精确的沿壁面的温度分布,进而求得微管沿壁面的导热量。

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13、

An experimental research of gaseous flow in microtube and analysis for effect factors

微细管内气体流动特性实验研究及影响因素分析

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14、

An Experimental Study of Flow and Heat Transfer in a 19.6 μ m Inner Diameter Quartz Microtube

19.6μm内径的微石英管内部流动与传热的实验研究

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15、

Therefore, the microwave adsorbing property is the best when the carbon microtube content is 1.0 wt%.

因此,碳微米管含量为1.0wt%时综合吸波性能最佳。

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16、

The Rarefaction and Compressibility Effects of the Gas Flow in Circular Microtube

微细圆管中气体流动的稀薄效应和可压缩效应

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17、

From the simulated result, gravity had so little effect on flow condensation heat transfer in microtube that it could be neglected.

模拟的结果表明,重力对微圆管流动凝结换热的影响非常小,可被忽略;

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18、

This research is aimed at determining the critical Reynolds number of the transition from laminar flow to turbulent in the microtube.

研究旨在确定微管道内流动从层流到湍流转捩的临界雷诺数。

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19、

Approximate analytic solution for gas flows in a long microtube

长微管道气体流动的近似解析解

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20、

Gas flows in a microtube/ microchannel

微管道气体流动

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