• It is formed by a process of "self-ionization".

    由“自身电离”这过程形成

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  • And we can calculate the ionization energy.

    我们能够计算电离能

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  • So let's compare those ionization energies.

    那么我们来比较一下它们的电离能。

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  • That is the strict definition of ionization.

    离子化严格定义

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  • So, we can now calculate the ionization energy here.

    我们可以计算这的电离能

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  • For example, I could look at the ionization of lithium.

    例如观察电离

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  • Yeah. OK. We're looking for the lowest ionization energy.

    我们最低的电离能。

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  • So, oftentimes you'll just be asked about ionization energy.

    经常你们问到关于电离能

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  • We will never have a case where ionization energy is negative.

    我们绝不会见到一个,电离能负值的情况。

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  • This is called ionization, gas phase species loses an electron.

    这个过程离子化组分失去一个电子

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  • That is to say the ionization energy of the second most electron.

    是二级电离能,这就是说,电子数第二电离能。

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  • Let's take a look at the lowest ionization energy in the center case.

    我们来看一下电离能最低中间的情况。

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  • So, we keep the atoms with the lowest ionization energy in the center.

    因此我们电离能最低原子放在中间

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  • So, as we go down a column, we see ionization energy's going to decrease.

    总之我们沿着往下时候,我们会看到电离能降低

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  • As we go down a column, what happens is that the ionization energy decreases.

    我们沿着向下的时候,会发现电离能降低的。

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  • The ionization energy, of course, is just the negative of the binding energy.

    电离能,我们知道就是,结合能

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  • So, in terms of ionization energy, we would expect to see sulfur in the middle.

    因此按照电离能我们应该放在中间。

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  • So, this is first ionization energy, let's think about second ionization energy.

    那么就是第一电离能,下面我们来想一想第二电离能。

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  • So if we want to solve for ionization energy, we can just rearrange this equation.

    因此出电离能我们需要将这个方程中的项变换一下位置。

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  • So, thinking about ionization energy, which atom would you put in the middle here?

    那么,从电离能的角度考虑,大家哪个原子放在中间

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  • The low ionization potentials of the heavier gases also account for their chemistry.

    较重稀有气体具有较低电离也可以解释它们的化学性质。

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  • We know that binding energy is always negative, ionization energy is always positive.

    我们知道结合能总是的,电离能总是正的

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  • Breathe is a living kitchen appliance that literally ‘breathes in’ air pollutants through ionization.

    Breathe一个活动的厨房装置,它通过电离真正起到了吸收空气中的污染物质的作用

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  • So it's going to keep in mind the limitations, so let's start off with talking about ionization energy.

    那么我们这些局限性心里,继续来讨论一下电离能

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  • We would expect the ionization energy to decrease, that means that sulfur has our lowest ionization energy.

    我们预期电离能降低意味着的电离能最低

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  • A long tendril of colder gas and dust extends many light years into the void from the receding ionization front.

    低温气体尘埃长长的卷须渐远电离前沿一直延伸数光年远太空。

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  • The first ionization potentials are as follows: He, 24.6; Ne, 21.6; Ar, 15.8; Kr, 14.0; Xe, 12.1; and Rn, 10.7 eV.

    稀有气体的第一电离这样的:He 24.6; Ne 21.6;Ar 15.8;Kr 14.0;Xe 12.1;Rn 10.7 eV。

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  • But, in fact, we can also talk about the ionization energy of different states of the hydrogen atom or of any atom.

    实际上我们可以讨论氢原子或者其它任何原子其它能级电离能

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  • Our ionization energy is going to be equal to the incident energy coming in, minus the kinetic energy of the electron.

    我们电离能将等于入射能量减去电子动能

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  • If something has a high ionization energy, it means that it really, really, really does not want to give up an electron.

    如果某个东西很高电离能意味着非常非常,非常愿意失去一个电子

    youdao

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