## Steady State Approximation

$K = \frac{k_{forward}}{k_{reverse}}$

104969854
Posts: 36
Joined: Fri Sep 29, 2017 7:05 am

### Steady State Approximation

Do we need to know how to do steady state approximation for the final, or simply the pre-equilibrium approach?

Brigitte Phung 1F
Posts: 50
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### Re: Steady State Approximation

I believe Lavelle said that we will only work with the Pre-Equilibrium Approach as it is less complex than the Steady-State Approach but still gives us the same result!

Matthew Lin 2C
Posts: 30
Joined: Fri Sep 29, 2017 7:06 am

### Re: Steady State Approximation

We will not need to know how to do steady state approximation for the final, since Dr. Lavelle did not teach it in class and said that it would take way too long to do. Therefore, we only have to know the pre-equilibrium approach, which should get the same result anyways.