According to the periodic table, we selected 16 kinds of metal ions with different ionic charge, radius and electron shell structure in research.
根据元素周期表,选择了离子电荷、半径和电子层结构不同的16种金属离子进行研究。
By calculating the number of valence electron shell, we can gain the geometry array of the electronic pair, and then judge the molecular structures.
计算出价层电子对数,得到电子对的几何排布,从而判断出分子的几何构型。
Elements in the first column all have one electron in their outermost shell. Those in the second column have two outer electrons, and so on.
第一列元素最外电子层内均有一个电子,第二列元素则含有两个电子,依此类推。
In other words, just want to know where the electron is somewhere within the shell radius of the ground state of atomic hydrogen anywhere.
换言之,我只是想知道,电子在哪,可以在氢原子基态下的半径,里面的任何地方。
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?
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?
They have the highest average valence electron energy in any shell.
它们有最大的价电子能,任意一层都是这样。
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