00:01
Hello, this question it is based upon the ideal gas equation.
00:09
So here we know that that is ideal gas equation is pv is equal to n rt.
00:20
And if let us suppose n is equal to 1 here, so therefore pv is equal to rt.
00:27
So pv is constant.
00:29
So temperature here this, we can say from this relationship, that is pv is equal to rt, that p is directly proportional to t as the temperature increases the value of the p is also increased so therefore the temperature of a gas it is inversely proportional to pressure here this statement is false next is that is one see this this p if this p increases with the with the increase of the number of moles of gases that means we can say that p is directly proportional to n so therefore one way to increase the pressure on a gas is to increase the gas proportion so this statement is next is see the one way to increase the pressure on a gas is to increase its volume see here from this relationship p p v is constant this pv is constant that means we can say p is directly proportional to v so here if p p is increases, volume decreases, if volume increases p or pressure decreases.
01:55
So therefore this statement is false.
02:03
For the next, if pressure is constant, the relationship between temperature and volume is direct.
02:12
So here if this pressure get constant here, so then v is directly proportional to t.
02:19
So therefore this statement is, next is, the pressure of the gas is defined as the form.
02:29
Force per force per unit area...