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The gauge is formed by a bourdon tube pressure gauge and a adjustable resistance transmitter. When the pressure is changing, the tube end deformed, and the pointer is toshow the pressure value through the driving system, at the same time, the brush is slippingon the resistance to transmit the pressure values to resistant values, which is transmited tothe secondary gauge to show the relative pressure value.

仪表由一个弹簧管压力表和一个滑线电阻式传感器组成,当被测压力变化时,弹簧管端产生位移,一方面通过传动系统使指针在度盘上指示相应压力,另一方面带动电刷在电阻上滑行,使被测压力值的变化转换为电阻值的变化,并传至二次仪表上指示相应的压力。

The gauge is formed by a bourdon tube pressure gauge a adjustable resistance transmitter. When the pressure is changing, the tube end deformed, the pointer is toshow the pressure value through the driving system, at the same time, the brush is slippingon the resistance to transmit the pressure values to resistant values, which is transmited tothe secondary gauge to show the relative pressure value.

仪表由一个弹簧管压力表和一个滑线电阻式传感器组成,当被测压力变化时,弹簧管端产生位移,一方面通过传动系统使指针在度盘上指示相应压力,另一方面带动电刷在电阻上滑行,使被测压力值的变化转换为电阻值的变化,并传至二次仪表上指示相应的压力。

As an assembled nanostructure, nanoelectrode ensembles or arrays present many advantages such as enhanced mass transport, lower double layer charging current, short time constant, lower electrolyte voltage drop, higher ratio of signal to noise, as well as good maneuverability, with high sensitivity and reliability in electroanalysis. Therefore, they have found broad applications in a variety fields including the study of electrochemical theory, biosensor, electrocatalysis and electrode materials in high energy chemical batteries.

纳米阵列电极作为一种人工组装的纳米结构体系,具有高传质速率、低双电层充电电流、小时间常数、小IR降及高信噪比、可操作性强和测量灵敏度高等优势,因而在电化学理论研究、生物传感器、电催化材料和高能化学电源电极材料等方面具有广阔的应用前景。

Electrons are physically separated and transported to increase their electric potential.

电子被物理分离和传传导,以增加他们的电势。

The results presented in this chapter have demonstrated the high performance of liquid transport by electroosmosis and the improved resolution by electrophoresis and shown a high potential of the electrochromatography on HAP.

本章所述的实验结果证实在羟基磷灰石色谱上施加电场所产生的电渗和电迁移有效地强化了分离过程的传质,从而提高了分离过程的速率和效率,该技术具有很大的发展潜力。

Alteration in excitability and conductivity of a nerve or muscle during the passage of an electric current through it.

电紧张当电流通过时,某一神经或肌肉产生的易激动性和传导体的变化

Because the governing equations have the relationship of translation symmetry, the displacement fields and the electrical potential fields can be represented by Bloch theorem to get the periodical structural governing equations.

将应力和电位移场以位移和电位场表示,即可利用层与层间的位移、应力、电位和电位移必须连续等条件求得转换矩阵,再满足上下表面的边界条件即能求得出压电周期叠层板波传频谱。

A practical charged membrane which prepared from the blends of sulphonated polyphenylene sulfide/poly can be considered as a 3D lattices. The experimental conductivity was related with a 3D simulation and the result showed the membrane has a transition from insulator to conductor at the ratio of charged components SPPS about 0.144. Obviously, this value falls in the range of a theoretical simulation for a 3D lattices.

由於实际的荷电膜也可看作为三维格栅体系,因此,可用三维格栅体系程序对不同荷电分率膜的电导数据进行拟合,结果表明,对於实际的磺化聚苯硫醚/聚醚碸共混膜,当荷电组分SPPS的分率达到0.144时,共混膜即会从不良导体变为良导体,显然该值落在理论值0.1~0.2,因此,理论模拟结果与实际荷电膜传质的实验数据相吻合。

When the elution was done with buffer of low salt concentration, the contribution of electroosmotic flux to the mass transfer became significant.

当采用高盐浓度洗脱溶液时,电渗的影响作用很小,电迁移改变了停留时间,因此可以通过选择适宜的电场方向来提高分离精度;当采用低盐浓度洗脱液时,电渗有效地促进了洗脱液与介质颗粒间的传质,提高了洗脱效果。

The permed hair had turned yellow at the ends; it was stiff,like fine electrical wire.

烫过的头发,稍子上发黄,相当的硬,像传电的细钢丝。

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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。