电子构型

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  • electron configuration
电子构型电子构型
  1. 关于CO特殊电子构型和性质的讨论

    A Discussion On Carbon Monoxide Special Electron Configuration And Quality

  2. 这是B2的价电子构型。

    So this is our valence electron configuration for b2 .

  3. 如果我们取h2,我们要画电子构型,这很简单。

    So , if we take h2 , and we want to draw the electron configuration , it 's very short .

  4. 结果表明,Be原子位于C(70)笼中心并且近似保持基态的电子构型而且Be原子和C(70)笼之间是相互排斥作用。

    The results show that Be atom occupies the center of the fullerene cage and approximately keeps its atomic electronic configuration and the interaction between the Be atom and the fullerene cage turns out to be repulsive .

  5. 分析了电荷转移能、B-O的结合能、B原子电负性、A、B原子价态、电子构型、掺杂等因素对催化剂光催化效率的影响。

    And factors of photocatalytic influence including charge transfer energy 、 B-O bonding energy 、 B atom electrongativity 、 valence of A and B atom 、 electronic conformation and doping were also discussed .

  6. 让我们看看这里的,电子构型是什么样的。

    So let 's think about what the valence electron configuration is here .

  7. 所以那是一点点关于,电子构型的入门。

    So that 's a little bit of an introduction into electron configuration .

  8. 四层过渡金属夹心化合物的电子构型

    The Electronic Configurations of Tetra-decker Transition Metal Sandwich Complexes

  9. 原子折射度与电子构型的关系

    The relation between atomic specific refraction and electronic configuration

  10. 让我们看看一些更复杂的,电子构型。

    So , let 's move on to some more complicated electron configurations .

  11. 无机材料性能与电子构型关系的探讨

    Relationship Between Inorganic Material Properties and Electron Configuration

  12. 金属卟啉催化性能与金属原子电子构型关系

    Study on Relationships Between Biocatalytic Properties of Metalloporphyrins and Electronic Configuration of Metal Atoms

  13. 能级图与原子的电子构型

    Atomic - Orbital Energies and Atomic Electron Configuration

  14. 这就是电子构型。

    So this is our electron configuration .

  15. 元素基态价电子构型反常现象的理论解释

    The Theoretical Explanation About the Anomalies of Valent Electron Configuration of Elements in the Ground State

  16. 但那是一个实际了解什么是,电子构型的思路。

    But that 's an idea of what it actually means to talk about electron configuration .

  17. 让我们来画氢原子的,电子构型,分子,氢分子。

    So let 's draw the electron configuration of hydrogen , the molecule , molecular hydrogen .

  18. 所以但是看起来你们在,做电子构型方面都是专家了。

    But it looks like you guys are all experts here on doing these electron configurations .

  19. 所以不管哪一个你们用的最好,都可以写出电子构型。

    So , whichever works best for you can do in terms of figuring out electron configurations .

  20. 实用现在我们返回来再考虑,关于填充任意原子,电子构型的问题。

    So now we can go back and think about filling in these electron configurations for any atom .

  21. 离子键和共价键都是由于原子要达到这个稳定电子构型而形成的。

    Both ionic and covalent bonds arise from the tendency of atoms to attain this stable configuration of electrons .

  22. 过渡金属原子在碳管上的平衡吸附构型依赖于金属原子的价电子构型。

    The equilibrium adsorption structures of the TM atoms depend on the valence electron configuration of the metal atoms .

  23. 今天我想提到的最后一件事,就是我们怎样考虑离子的,电子构型。

    So the last thing I want to mention today is how we can think about electron configurations for ions .

  24. 所以你们可能会问当你们,在写电子构型的时候,在写电子构型的时候。

    So you might ask in terms of when you 're writing electron configurations , which way should you write it .

  25. 三维结构配位聚合物的自聚焦或自散焦效应主要受中心金属离子价层电子构型的影响。

    Three dimensional coordination polymers show self defocusing or self focusing effects depending on the valence shell structures of the central ions .

  26. 这里是我提到的,对于写电子构型,和以正确的顺序得到轨道能量。

    So here 's the pneumonic I mentioned for writing the electron configuration and getting those orbital energies in the right order .

  27. 电子构型就是,对于锂的薛定谔方程,的单电子近似的,简化形式。

    The electronic configuration , all it is is the shorthand notation for that one electron approximation for the Schrodinger equation for lithium .

  28. 然后有一些事情是,你们可能有较多经验,那就是讨论电子构型以及,写出它们。

    Then something that you probably have a lot of experience with is talking about electron configuration and writing out the electron configuration .

  29. 稀土离子特殊的电子构型、丰富的电子能级使稀土发光材料在信息显示、照明等领域有着重要应用。

    Rare earth luminescent materials have been widely used in information display and green lighting due to its special electronic structure and profuse energy levels .

  30. 这些新测定的偶宇称能级属于4f~66s7S电子构型,位于33477~37758cm~(-1)能量范围。

    These newly measured levels of even parity belong to 4 / 66s7S configuration and located in the energy range between 33477 and 37758 cm-1 .