• Dopant tAn element that contributes an electron or a hole to the conduction process, thus altering the conductivity.

    搀杂剂-可以为传导过程提供电子或空穴的元素,此元素可以改变传导特性。

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  • Electrical conductivity in water is a measure of the ion-facilitated electron flow through it.

    水的电导率是离子易化电流通过水时的测量值。

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  • A method for measuring the electron conductivity in mixed conductor is pre-sented.

    提出了一种求取混合导电体电子电导率的方法。

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  • The nonlinear broadening of spectrum, the RF-induced-tail producing additional conductivity, and time evolution of average electron and ion temperatures are taken into account.

    考虑了低混杂波电流驱动时非线性效应的波谱展宽、附加电导率以及电子和离子的温度变化。

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  • With the increase of the temperature, the electron conductivity and hole conductivity decreased.

    随着实验温度的增加,乳剂晶体的电子电导率和空穴电导率都下降。

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  • We study the spin Hall conductivity and tunneling spin current in the bilayer two-dimensional electron gas.

    我们研究了双层二维电子气中的自旋霍尔电导率以及隧穿自旋流。

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  • At the beginning of ageing, GP zone was formed with the decomposition of the supersaturated solid solution, electron scattering increased, the electrical conductivity decreased.

    时效初期,过饱和固溶体分解形成原子偏聚区,电子散射增加,合金电导率下降。

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  • The dielectric loss and the microwave photoconductivity methods were used to determine the ionic conductivity and the photo-electron decay kinetics of the emulsion microcrystals.

    本文制备了三个不同形态比的卤化银乳剂,用介电损耗法和微波光导法分别测定了它们的离子电导和光电导衰变动力学。

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  • The carbon paste can greatly improve the electrical conductivity and the electron transfer rate of the electrode, and simultaneously can improve the stability of the electrode.

    可以大大提高电极的导电性和电子转移速率,同时还可以改进电极的稳定性。

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  • The combined effects of the electron thermal conductivity and the impurity radiation on ohmic heating of tokamak plasmas are studied by using a set of simplified energy balance equations.

    本文利用欧姆加热条件下简化的能量平衡方程研究了热传导与杂质辐射的综合效应。

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  • The results showed that electronic thermal conductivity had different effects on electronic maximum temperature, electron-phonon coupling time and electron-phonon coupling temperature.

    结果表明:电子热导率对金靶材表面电子最高温度,电声耦合时间及电声耦合温度都有不同程度影响。

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  • The results showed that electronic thermal conductivity had different effects on electronic maximum temperature, electron-phonon coupling time and electron-phonon coupling temperature.

    结果表明:电子热导率对金靶材表面电子最高温度,电声耦合时间及电声耦合温度都有不同程度影响。

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