But what if you are able to find identical twins who were separated at birth, and reared in radically different environments.
如果你能找到,出生时就分开了的,同卵双胞胎,在完全不同的环境里长大。
They're not interacting at all so that's why the energy is the same as that for two individual atoms, that's what we're dealing with. As we get closer together, we start get lower and lower in energy.
它们之间没有任何相互作用,因此,体系的能量就等于两个分开的原子的能量,这就是我们要处理的,而随着我们的距离越来越近,我们的能量开始变得越来越低。
A boy and a girl fell in love from the wrong sides of the tracks The families were upset so they tossed the boy and the girl into two different constellations, thinking that they would never meet again.
男孩爱上了本不该相爱的女孩,双方家庭很生气,所以他们把,这对恋人分开到两个不同星座上,认为这样他们就不会再见面了。
As we saw by thinking about the abnormal case, these things can come apart and we can have Phase D.
在异常的案例中,这两者可能会分开,就如D阶段。
Once again, source critics see in the account of the parting of the Reed Sea in Exodus 14 and 15, three different versions of the event that have been interwoven.
材料批评家又一次,就《出埃及记》14和15分开Reed海中,发现了三个版本,相互交织。
So, if we talk about dissociating h 2, we're going from the h 2 molecule, and breaking this bond right in half, so we now have two individual hydrogen atoms here.
那么,如果我们讨论的是离解氢分子,我们将从氢分子开始,使这个键断裂,一分为二,那么就得到了两个分开的氢原子。
Often a good thing to start with is to put the lowest ionization energy atom in the middle, and if you don't have charge separation then go with that structure, but if you do find you have a lot of separation, such as the case in negative 2, positive 2, and minus 1, then you want to say wait a second, this is really bad in terms of formal charge, let me go ahead and see what other options I have here.
通常一开始把电离能最低的原子,放在中心位置就很好了,如果你发现电荷没有分开,那么这个结构就没问题了,但是如果你发现有很多分开的电荷,比如这种情况,有负二,正二和负一,那么你会想要说等一下,从形式电荷来看这很不好,让我去看看其它可能的选择。
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