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1)  grain boundary resistance
晶界电阻
1.
3 MnO3 in the experiment, this paperestablishes an ideal pattern and discusses grain boundary resistance and the role it plays, obtaining theconclusion that grain boundary resistance has a rapid increase as the particle size decreases, which isrelevent to boundary thickness of nane particle and particle size proportion.
3MnO3纳米固体电阻行为,建议了一种理想模型,讨论了晶体电阻和晶界电阻所起的作用,得到了晶界电阻随粒径减小而迅速增加,且与纳米粒子的界面层厚度和粒径比相关的结论。
2)  grain-boundary magnetoresistance
晶界磁电阻
1.
A small amount of Ag doping can apparently increase grain-boundary magnetoresistance induced by spin-dependent scattering.
少量的Ag掺杂可以明显提高自旋相关散射产生的晶界磁电阻。
3)  grain resistance
晶粒电阻
1.
3%SiO_2 shows minimum breakdown voltage,maximum apparent electrical constant and minimum grain resistance.
3%SiO2配制的样品具有最低的压敏电压、最大的相对介电常数及最小的晶粒电阻。
2.
It was found that grain resistance increase first and then decrease accompanying Ta_2O_5 contents,increase.
研究T a2O5对(S r,B i,S i,T a)掺杂的T iO2基压敏陶瓷半导化的影响,发现随着T a2O5增加,晶粒电阻呈现“U”字型变化规律,按照配方T iO2+0。
4)  Interface Electric Resistance
界面电阻
1.
Study on interface electric resistance of electro-osmotic consolidation;
电渗固结中的界面电阻问题
5)  interfacial resistance
界面电阻
1.
Composite cathode could improve the performance and efficiency of the solid oxide fuel cell at high temperature,decrease the over-potential,polarization resistance and interfacial resistance.
复合阴极可以提高固体氧化物燃料电池(SOFC)在高温下的性能和效率,降低过电位、极化电阻和界面电阻。
2.
The results show that the interfacial resistance of GSC-SDC cathode is 3~5 times lower than that of GSC cat.
用交流阻抗谱从500~750℃测量了GSC-SDC复合阴极和SDC电解质之间的界面电阻。
3.
The conductivity and interfacial resistance were tested by alternating current impedance techniques.
采用交流阻抗技术测试了其电导率和界面电阻,当x=8时,体系的电导率最大,80℃时为1。
6)  interface resistance
界面电阻
1.
It is characterized by such strong points as low anode potential,small interface resistance,compactness of PbO_2 depositing coating,and small edge effect,etc.
该电极具有阳极电位低、界面电阻小、PbO_2沉积层致密无针孔、边缘效应小的优点。
2.
It has high application value in electrical, electronic and electrical chemistry industry because of its small value of interface resistance at transit electrical point.
爆炸复合材料的界面电阻,是用其制作的异种金属导电过渡接头的一项重要的技术指标。
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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