Answer : The concentration of
at equilibrium will be, 0.0086 M
Explanation : Given,
Equilibrium constant =
The balanced equilibrium reaction is,
Initial conc. 0.0546 0.0546 0
At eqm. (0.0.546-x) (0.0.546-x) x
The expression of equilibrium constant for the reaction will be:
For the given the value of
will be,
![(1)/(1.7* 10^(-3))](https://img.qammunity.org/2020/formulas/chemistry/college/pecxfs8yae9fhajl9o183c723mlrt1tq58.png)
Now put all the values in this expression, we get :
By solving the term 'x', we get:
From the values of 'x' we conclude that, x = 0.065 can not be more than initial concentration. So, the value of 'x' which is equal to 0.065 is not consider.
So, x = 0.045 M
Thus, the concentration of
at equilibrium =