00:01
So before we actually answer this question, let's say we've got a compound ab.
00:05
It is important to note that the overall charge on this compound, which is equal to zero, it is not charged.
00:12
It is equal to the sum of the individual oxidation numbers or the charges that are making up that compound.
00:21
For example, if we are looking at k2, p -t -n -o -2, 4, the first thing would be identifying the central atom, which is, platinum.
00:31
So we are saying the overall charge which is equal to 0 is equal to 2 multiplied by the charge on the potassium atom plus the charge on the platinum atom plus 4 multiplied by the charge on the no2 molecules.
00:47
So looking at this, if we are to make the substations where we've got positive 1 right here, we determine the charge on the platinum atom to be equal to positive 2.
00:57
This is the oxidation number of the central atom, which is platinum.
01:05
So what we did here was to substitute positive 1 here.
01:08
And here this is plus 4 multiplied by 0.
01:11
This gives us negative 2 is equal to 0.
01:15
So platinum is equal to positive.
01:19
So we do the same thing for the rest of the compounds.
01:23
We have co, n0 2, 3...