electron orbit

美 [ɪˈlektrɑːn ˈɔːrbɪt]英 [ɪˈlektrɒn ˈɔːbɪt]
  • 电子轨道(电子层)
electron orbitelectron orbit

noun

1
the path of an electron around the nucleus of an atom
Synonym: orbit

数据来源:WordNet

  1. Connection index ~ mZ of the Valence Electron Orbit Energy and Its Application

    价电子轨道能量连接性指数~mZ及其应用

  2. Computation of the Clebsch-Gordon Coefficient of Electron Orbit Spin Angle Momentum Coupling

    电子轨道自旋角动量耦合的克莱布希-高登系数的计算

  3. It is the value of the radius of the ground state electron orbit in atomic hydrogen .

    它就代表氢原子基态电子,的轨道半径。

  4. The Unchangeability of the Electron Orbit Radius and the Diamagnetic Effect in the Magnetic Field

    磁场中电子轨道半径不变性及抗磁效应

  5. The effect of electronegativity and valence electron orbit energy topological index on superconductive critical transition temperature of doping MgB_2 system

    电负性/价电子轨道能拓扑指数与MgB2体系转变温度的关系

  6. Correlativity between the topological index ~ mE of valence electron orbit energy and the acidity of inorganic hydrides

    价电子轨道能量指数~mE与无机氢化物酸性的相关性

  7. In classical physics , the diamagnetic effect is approached on the supposition that the electron orbit radius remains unchanged .

    经典物理学是在假设电子轨道半径不变的情况下研究抗磁效应的。

  8. Enlightened by the topological index mX of the Randic molecular connection , the author develops a topological index mZ , the valence electron orbit energy .

    受Randic分子连接性拓扑指数的启发,构建了拓扑指数mZ。

  9. And , in fact , the functionality is that of the square r So this tells us that the radius of the electron orbit , first of all , there is more than one radius .

    事实上,就是n的平方乘一个常数。,of,this,number,times,a,constant。,所以这就告诉我们,首先,电子轨道的半径是不固定的。

  10. However , the hydrogen inhibitor had little effect on the cathodic current efficiency of Zn electrodeposition , because in this case the S species with lone-pair electrons in the inhibitor was hard to be chemically adsorbed on the surface of Zn with fully-occupied outer valence electron orbit .

    Zn价电子已满,含有孤对电子的硫族化合物不能在其表面发生化学吸附,故抑氢剂对纯Zn电镀的阴极电流效率影响不大。

  11. Well , suppose I want to look at something like an electron in orbit here .

    假如我想看到,轨道上像电子一样的东西。

  12. On the Electron Elliptic Orbit Paying Regard to the Nuclear in Motion

    虑及核运动的电子椭圆轨道

  13. Electron Equilibrium Orbit Adjustment and Closed Orbit Correction in Hefei Electron Storage Ring

    合肥储存环电子束平衡轨道的调整及闭轨校正

  14. Electron steady orbit of circularly polarized free electron lasers with axial magnetic field

    带引导场圆极化自由电子激光器的电子稳态轨迹

  15. Stability of Electron Circular Orbit in an Ion channel Electron Cyclotron Maser

    离子通道电子回旋脉塞中电子圆轨道的稳定性

  16. A Method to Conclude the Electron Ellipse Orbit

    电子椭圆轨道的一种推导方法

  17. The stability of the electron beam orbit is extremely important to the synchrotron radiation storage ring .

    稳定的束流轨道对于同步辐射电子储存环非常重要。

  18. The Topological Index ~ mB of Valence Electron Average Orbit Energy and Its Calculation for Acid Strength of Inorganic Hydrides

    价电子轨道平均能量连接性指数~mB及对无机氢化物酸性的预测

  19. Let 's imagine this is the electron in its orbit .

    想象一下,电子在它的轨道中。

  20. Local correction of electron beam closed orbit in HLS storage ring

    合肥光源电子储存环束流闭轨的局部校正

  21. Each resonance peak in the Fourier transformed cross section is associated with one electron 's closed orbit .

    为了表明光剥离截面和闭合轨道的关系,我们计算了这一体系的傅立叶变换截面。

  22. If de Broglie is correct , we could then model the electron in its orbit not moving as a particle , but let 's model it as a wave .

    如果德布罗意是对的,那么我们可以在电子轨道中建立电子模型,不是像粒子一样运动,而是像波一样运动。

  23. An electron in the innermost orbit has the least energy .

    最里面的轨道上的电子能量最低。

  24. In order to have an electron in a stationary orbit this implies standing wave .

    为了在静止的轨道中拥有电子,驻波是不可少的。

  25. That is the electron in its lowest orbit , to the nucleus of atomic hydrogen .

    那就是氢原子原子核外电子,最低轨道到情况。

  26. Forecast of the enhancement of relativistic electron at the geo-synchronous orbit events

    地球同步轨道高能电子增强事件预报方法

  27. Its frequency is an integral multiple of one-half the classical frequency of revolution of the electron in the bound orbit .

    其频率为在束缚轨道上电子旋转的经典频率之半的整数倍。

  28. The 2 MeV electron flux at geostationary orbit will cease to increase when AE index decreased to 200 nT or lower value .

    当AE指数降到200nT时,地球同步轨道2MeV电子的通量才停止增长。

  29. When solar wind density was low and AE index greater than 200 nT , the 2 MeV electron flux at geostationary orbit will increase sustained .

    当太阳风密度低且AE指数大于200nT时,地球同步轨道的电子强度会持续地增强。

  30. Low solar wind density and the strong substorm are the two key parameters leading to the 2 MeV electron flux at geostationary orbit reach very high level during the geomagnetic storm recovery phase .

    在磁暴恢复相期间,低的太阳风密度和强的亚暴是导致地球同步轨道能量大于2MeV电子通量的达到极高值的两个关键参数。