excess charge

英 [ɪkˈses tʃɑːdʒ] 美 [ɪkˈses tʃɑːrdʒ]

网络  过剩电荷; 超额费用; 剩余电荷; 超重

电力



双语例句

  1. I'm afraid there'll be an excess baggage charge.
    恐怕得收你超重费。
  2. How much is the excess baggage charge?
    超额行李费多少钱?
  3. The center of excess negative charge on all of the dipoles is at the very center of the molecule.
    多出来的键,的负电荷中心都集中在,分子的正中间。
  4. I am afraid there will be an excess baggage charge, sir.
    先生,我想这必须付超重的费用。
  5. So now that means if this is where the center of positive excess charge lies and on top of it is the center there is no displacement of the charge so there is no net dipole.
    所以现在我们说,如果正电荷中心,就位于,那么还是在这里负电荷中心也在这里,所以没有空间偶极。
  6. Where is the center of the excess positive charge?
    那键的正电荷中心呢?
  7. Similarly, either an addition of positive charge or a removal of negative charge will result in an excess positive charge.
    加入正电荷或移出负电荷,都将同样地导致过剩的正电荷。
  8. It can also reduce the density of the recombination centers of Si ≡ Si-dangling bonds, which would increase the excess carrier density and the rate of charge trapping. Boh of them speed the photoconductivity degradation.
    以及减少Si≡Si-复合中心,从而有可能提高非平衡自由或流子密度和增强电荷被陷的速率,而间接地增强光电导衰减。
  9. Analysis of Thermally Stimulated Current due to the Excess Charge in Film Electret
    薄膜驻极体中过剩电荷的热激电流的分析
  10. Ion I-can improve the metal surface excess charge on galvanic electrode significantly.
    I-能显著改善电偶电极表面过剩电荷状态。
  11. The excess charge carrier in the nonlinear resistance is proposed to be a kind of Brownian particles moving in the environment with space distribution friction coefficient.
    提出了非线性电阻中载流子是一类在空间分布型摩擦系数环境中运动的布朗粒子。
  12. Among these materials is diamond, the most likely superconductor candidate with the highest Debye temperature. Unfortunately, diamond is an insulator with no charge carriers that can contribute to superconductivity; therefore, how can excess charge carriers be introduced into diamond?
    在这些材料中,金刚石以其最高的德拜温度成为了最可能的超导体。然而不幸的是,金刚石中没有能够有助于导电的电荷载体而成为了绝缘体家族中的一员。
  13. In that case, the surface excess is sensitive to the surface charge density, the counterion valence and the salt concentration.
    在这种情况下,聚电解质的吸附值对表面电荷密度,反离子价态和盐浓度的变化都非常的敏感。
  14. Solving the Fokker-Planck equation of the excess charge carrier the relationship between the Peltier coefficient and the volt-ampere characteristics of the nonlinear resistance has been derived.
    解载流子的福克普朗克方程得到了帕尔帖系数和非线性电阻的伏安特性曲线的关系。