... orbital tracking 轨道,跟踪 bonding orbital 键轨函数,成键轨道,... orbital precession 轨道旋进 ...
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valence bonding orbital 价成键轨道
framework bonding orbital 骨架成键轨道
bonding orbital-connection matrix 键连接矩阵
bonding-orbital connecting matrix 键连接矩阵
bonding g orbital 成键轨函数 ; 键轨函数
4f orbital bonding f轨道成键行为
molecular orbital bonding energy 分子轨道成键能
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So it's an Anti-bonding orbital.
这是一个反键轨道。
So, let's start our discussion of a bonding orbital.
让我们开始来讨论成键轨道。
And this again is what we're going to call a bonding orbital.
同样,我们叫它成键轨道。
And so this lower level is called a bonding orbital, and it is a bonding molecular orbital.
所以能级较低的轨道叫做成键轨道,这就是成键分子轨道。
And what you find is when you have a bonding orbital, the energy decreases compared to the atomic orbitals.
你们发现当你有个成键轨道的时候,相比原子轨道能量要降低。
It turns out that the antibonding orbital is a little bit higher from the atomic orbital level than the bonding orbital is lower.
这证明了,反键轨道,比原子轨道高,成键轨道比原子轨道第。
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