00:01
They want us to determine what kind of isomers are the following pairs that they give us.
00:06
So let's go ahead and start with the first one.
00:09
And we actually don't even need to draw anything out for this.
00:13
So it's normally a good idea, though, to at least make sure when they give you an isomer question that you have the same amount of atoms.
00:21
Because if you don't have the same amount of atoms, they're not isomers.
00:23
They're just completely different molecules in general.
00:26
But let's just go ahead and assume that they're correct, and these actually are isomers.
00:33
Well, if we were to look, this first one here is hexene.
00:40
So that means we have a double bond somewhere.
00:46
And then over here we have a cyclohexane, which is a ring.
00:51
So we actually have where the atoms are going to be connected in a different way, and they're going to be moved around.
01:00
And so because of this, these are going to be constitutional isomers of each other.
01:11
And if you were to just kind of draw this out really quickly, so we'd have cyclohexane, and then we could just throw our chloro on there, and then hexene.
01:22
So one, two, three, four, five, six.
01:25
So it says at position two, we have the double bond.
01:28
In position five, we have the chlorine, so one, two, three, four, five...