
词语导航
基本信息
词语:电子壳层
繁体:電子殼層
拼音:diàn zǐ ké céng
英语翻译
【化】 electronic shell【医】 electronic shell
相关词条
1.electronshell分词翻译
电子的英语翻译:
electron【化】 electron
【医】 e.; electron
壳的英语翻译:
carapace; hull; rind; shell; shuck【化】 cover
【医】 crust; crusta; crustae; putamen; shell; testa
层的英语翻译:
layer; region; stage; story; stratum; tier【计】 layer
【医】 coat; lamella; lamellae; lamina; laminae; layer; strata; stratum
翻译例句
1. 含有铁、钯、铂和稀土元素的化合物呈现强顺磁性,因为这些元素的原子有不完全的内电子壳层。
Compounds containing iron, palladium, platinum, and the rare-earth elements exhibit strong paramagnetism because they have atoms with some incomplete inner electron shells.wWw.WenTiYI.COm
2. 遗憾的是,一秒钟的标准定义依赖于原子在绝对零度的条件,而实际的时钟需要在室温下运行,室温条件下电子壳层膨胀了。
Unfortunately, the standard definition of a second relies on what the atom does at a temperature of absolute zero. Real clocks need to run at room temperature, where the shell of electrons puffs up.
3. 原子的基态是原子能量的最低状态,这对于研究原子的电子壳层结构具有重要的意义,本文给出了确定原子基态的一种方法。
Atomic ground state is the minimum state of atomic energy, which is significance to the study of electric shell structure of atom.
4. 这个想法是由化学中的化学键理论想到的。在这个理论里,人们通常认为原子中形成满壳层的电子对化学键完全没有贡献。
The idea was suggested by the chemical theory of valency in which one is used to the idea of electrons in an atom forming closed shells which do not contribute at all to the valency.
5. 因此要填满我们的“八隅体“,排满所有的价壳层,我们总共需要十八个电子。
So in terms of total numbers that we would need to complete our octets and fill our valence shells, we would need 18 electrons.
6. 化学键的形成来源于一个满壳层之外的电子,也有可能是形成于一个不完全的壳层或满壳层上的一个电子空穴。
One gets a contribution from an electron outside closed shells and also a possible contribution coming from an incomplete shell or a hole in a closed shell.
7. 但当我们讲到径向概率分布时,我们想做的是考虑,在某一个壳层里,找到电子的概率,就把它想成是蛋壳?
But still, when we"re talking about the radial probability distribution, what we actually want to think about is what"s the probability of finding the electron in that shell?
8. 我们需要8加4等于4,12个电子来填满壳层。
We need 8 plus 4 is 12 for full shells.
9. 因此,为了填满所有的壳层,我们需要三乘以八也就是二十四个电子。
So, in order to fill up our shell, what we need is 3 times 8 or 24 electrons.
10. 原因是因为我们的氢,已经有一个排满的价壳层了,它不再需要多余的电子了。 !
Thee reason is because we already have a full valence shell for our hydrogen, it doesn"t want any more electrons.
11. 所有的卤素都要求得到一个额外的电子来填满p壳层。
All the halogens require one more electron to complete a P-shell.
12. 原因是因为我们的氢,已经有一个排满的价壳层了,它不再需要多余的电子了。
The reason is because we already have a full valence shell for our hydrogen, it doesn"t want any more electrons.
13. 利用电子能量损失光谱学研究了蓝宝石核心壳层吸收边缘。
The core_shell absorption edge of sapphire is studied by using the electron energy loss microspectroscopy.
14. 介绍了利用电子轰击核靶原子K壳层电离截面的一种计算方法。
This article is related to a calculating method of atomic ionization cross section on K - shell when bombarding a nuclear target with electron.
15. 满壳层中电子的轨道运动所产生的磁场也被成对地抵消了。
The magnetic fields produced by the orbital motions of the electrons in filled shells also cancel in pairs.
16. 低能电子碰撞原子内壳层电离截面测量的研究在理论和实际应用方面都具有重要意义。
The study of atomic inner-shell ionization cross-sections by low-energy electron impact is significant in both theoretical researches and practical applications.
17. 由于稀有气体晶体原子保持了核外满壳层的电子结构,与其他晶体材料相比,原子间的相互作用非常简单。
The interaction between atoms in it are very simple contrasted with the other crystals, due to the full shell structure of the electron maintained by the atoms in rare gas crystal.
18. 当我们向下走时,我们会将电子加在越来越远的壳层上,因此我们将看到原子半径,将随我们沿周期表向下走而增大。
So as we go down we"re now adding electrons to further and further away shells, so what we"re going to see is that the atomic radius is going to increase as we"re going down the periodic table.
19. 本文将闭壳层体系的近似关系式,应用于计算原子开壳层体系非相对论的总电子能量。
An approximate relationship is applied to calculate nonrelativistic total electronic energies of atomic open shell systems.
20. 可见光的光子具有足够的能量,可以将电子撞到下一个轨道壳层(再也不用为了像自旋那么细微的东西而烦恼了)。
Optical photons pack enough energy to bump electrons clear into the next orbital shell -no need to fuss with subtleties like spin.
21. 路易斯结构规则的第三步是,找出让分子中每个原子的价壳层,都排满应该需要多少个价电子。
Step three in our Lewis structure rules is to figure out how many electrons we would need in order for every single atom in our molecule to have a full valence shell.
22. 考虑了内壳层电子激发的组态相互作用后,采用R矩阵方法计算了电子碰撞类锂碳离子的共振激发碰撞强度。
The multichannel R-matrix code is employed to compute the collision strengths for electron-impact excitation of pentacid Mg ion.
23. 考虑了内壳层电子激发的组态相互作用后,采用R矩阵方法计算了电子碰撞类锂碳离子的共振激发碰撞强度。
The multichannel R-matrix code is employed to compute the collision strengths for electron-impact excitation of pentacid Mg ion.
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