• They are the radius of the orbit, the energy of the system and the velocity of the electron, and I am just going to present you the solutions.

    它们轨道半径系统能量以及电子速度接下来你们展示解法

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

    就是氢原子原子核外电子最低轨道情况。

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

    想象一下电子的轨道中。

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  • R This is the radius of the orbit in which the electron travels.

    距离,So,,this,distance,here,is,R。,这是轨道半径,就是电子运动的地方。

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

    假如看到,轨道电子一样的东西

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  • Bohr was able to predict the wave lengths of the light from the makeup of the atom, and the jump from electron orbit to electron orbit.

    玻尔根据原子结构电子轨道跳跃情况预见波长

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

    最里面轨道上的电子能量最低

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  • The radius of the orbit, the energy of the system and the velocity of the electron, I am just going to present you the solutions.

    轨道半径系统能量以及电子速度接下来你们讲解方程的解法。

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  • When the low-Earth orbit (LEO) satellite is low, the contribution of the Total Electron Contents (TEC) above the satellite is not neglectable for inversion of GPS-LEO ionospheric occultation.

    电离层掩星观测中,低轨卫星(LEO)轨道高度低时,轨道以上电离层电子含量(TEC)对掩星反演的影响不能忽略。

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  • Let's suppose that the electron at first is in the normal orbit.

    我们假设电子起初基态轨道上。

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  • While the electron intercalates and deintercalates easily due to the smaller energy that orbit leaps from the HOMO orbit to the LUMO orbit.

    最高占有轨道HOMO最低空轨道(LUMO跃迁能很小,电子较易进行嵌入脱出。

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  • A quantized elliptical orbit of electron in hydrogen_like atom is concisely derived from Binet equation with the aid of Bohr_Sommerfeld s quantized condition.

    比耐公式出发,结合玻尔———索末菲量子化条件,对类氢原子电子量子化椭圆轨道,给出了一个简化的推导,并此基础上,对轨道的稳定性进行进一步的讨论。

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  • The energy and the elliptical orbit of the electron in hydrogen-like atom are derived from formula inverse square attraction and Sommerfeld's quantized conditions.

    利用平方反比引力给出关系式末菲量子化条件推导出类氢原子椭圆轨道能量

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  • Spin orbit scattering effects in a layered quasi 2d disordered electron system have been investigated by the diagrammatic techniques in perturbation theory.

    利用微扰论中的图形技术讨论无序电子系统自旋轨道散射效应的有关问题。

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  • When the atom absorbs energy from light, one electron may move to a higher energy orbit, leaving an unpaired electron.

    原子吸收能量电子移动更高的能量轨道留下未成对电子。

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

    为了静止轨道拥有电子是不可少的。

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  • Methods:The tumor at the right orbit of a 4-yr. boy was excised and examined histologically—by light microscope and light transmission electron microscope.

    方法4岁男孩泪腺恶性肌上皮瘤患者肿瘤组织进行光镜、电镜观察。

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  • An electron moving in an excited orbit stays there only for a very short time.

    电子激发态轨道上只能逗留时间

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  • Spin-orbit coupling is the interaction between the spin magnetic moment of an electron and magnetic field generated by its orbital motion.

    -轨道耦合电子磁矩轨道运动产生磁场之间相互作用

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  • The same code can also be used to compute spin-orbit coupling using a effective one-electron so Hamiltonian and so called Atomic Mean Field Integrals (AMFI).

    相同代码可以用来计算轨道耦合有效利用单电子哈密顿所谓的SO原子平均积分(AMFI)。

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  • The same code can also be used to compute spin-orbit coupling using a effective one-electron so Hamiltonian and so called Atomic Mean Field Integrals (AMFI).

    相同代码可以用来计算轨道耦合有效利用单电子哈密顿所谓的SO原子平均积分(AMFI)。

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