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Ch3och3 orbital energy diagram...

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Ch3och3 orbital energy diagram

ch3och3 orbital energy diagram



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Sketch the $d$ -orbital energy level diagram for a typical octahedral complex.

So now we'll work on problem 12 from chapter eight in this problem were asked what, Ben and provide an example. So an orbital diagram is a diagram that will show the electronic configuration. But it will represent the electrons as arrows. Ah, with direction indicating spent, um So just to provide an example here to show it looks like we could take the flooring, Adam. So if we want to read the electronic configuration of flooring, we would write one s two to s two and then to be five, because it's in the er second, their column. So this is the electron configuration the orbital diagram would represent by showing the orbital's 1st 1 s, and then sometimes you might have a box, or sometimes not. But you show the electrons with spin. So in the one that's orbital have once been at once been down same thing in the two s corporal and then in the two p orbital, we'll have five electrons. So here we have two that repaired and we'll have two more than repaired. And then we have one impaired electron like this. Sometimes you might see just a space like this. Sometimes you might see a box. Um or sometimes no box. It all has shown here, but this is in orbital diagram.

Chapter three Problem twelve says, What isn't orbit a diagram? Provide an example, and orbital is the location on and Adam, where the probability of finding an electron is at its greatest. There are many different orbital's, and a great way to represent them is using an orbit diagram and orbit of diagram is also a great way to represent electron configuration. So let's do an example. That's where we have Boram. Boron has an atomic number five. Therefore, a neutral atom of boron has five pro times and five electrons. The electron configuration for Bora is as follows. One has to two as two. Two p. One. And we know this is correct because we can count five electrons one too. Three four, five. An orbital diagram will visually represent where those electrons are located. So in orbit of Bagram is shown by having a box that represents that orbital. It's to be a one s organ. Ross. I'm gonna have a blacks or to ask for bro. When it comes to Pete Orbital's, we're going to have three boxes. The shape of a Pete Norberto allows it to have three different orientations in space. So all three of these boxes represent the teepee orbital's when filly and the Electrons in orbit, or we're going to do it according to like truck configuration. A One hour is over, though, has two electrons, so we have one electron up and one electron down. The fact that the electrons are opposite corresponds with having opposite spin according to the off fuck the pile exclusion principle. Excuse me. Politics Losing principle states that no two electrons can have the same quantum number. So if they're found in the same energy level, one must have a spit up and while must have us pinned down, the two has already also has two electrons one up, one down the toupee orbit on Lee hasn't one electron. So would you show one up and the first energy look? The first orbital of the toupee diagram. This is an example of an orbit of diagram of boron and which we've taken the electron configuration and visually depicted it exactly which orbit it will follow too

The question. You're asked us to draw the A molecular orbital diagram for lithium, so I lied to. So first of all, we know that lithium is as the electron configuration of 12 and then to s one. So from here, if we have an energy diagram, if I drop one that where that is energy energy, we know that in the first sub shell, this is goingto have a full in the SS, so that's gonna be completely full like that. And of course, in the to us is as we only have one, um, we only have one kind of bond there. One protect particular orbital, half filled. It's going toe act like this. So, um, as we have to basically two molecules that were looking, we can connect these two together. So from here, it's asking us what the body odor is. So how to be totally that we I know that as it has a single bond between the two, it's going to be born. Order is going to be one. So from there we can basically elaborate that it's gonna likely be stable. So this is going to be stable, and that is entered this question here

Okay, so for this first one, we'll go from the orbital diagram to the electron configuration, it's one S 22 S one which matches up with lithium if you want to, you can count electrons and see that. That's three electrons which matches up with your lithium. This next one is 1 too to us too. Two P six, 32 three P five. So you can just look at the periodic table and see who's three p. 5 and that will be chlorine. Or you can add all these electrons up And you're going to get 17 electrons, which again confirms that you've got chlorine there. Mhm. And then we've got one too to us too, two P six, three S. One. So you can look to see who matches up with three S. 1 and that's going to be sodium. Or again, you can add all these up and see that you have 11 electrons and see that that's sodium.


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