00:01
The given consecutive reaction a will be b2c2 that will be the k1, that will be the k2, that will be the k1, that will be the k2 and as per course e1 much, much greater than e2.
00:16
Now, for the consecutive and k1, k2 are the both are rate constant.
00:21
Now, consecutive reaction, the concentration of b that will be the concentration initial concentration of a that is a0 into k1 over k2 minus k1 into e to the power minus k over t minus e to the power minus k2 t, t is the time taken and we use here steady state approximation, it will be our assumption.
00:53
Now, a0 will be the initial concentration of b.
01:03
So, the concentration of b from the above equation, we can say that is harris took initial concentration of b0 and again, we know that e1 much, much greater than e2.
01:17
So, the a tends to b in this reaction and this is our rate determining step.
01:26
When a trans convert to b, this process will be our r test for rate in step...