Answer: The value of
for the reaction is 6.32 and concentrations of
is 0.094 M, 0.094 M and 0.106 M respectively.
Step-by-step explanation:
Relation of
with
is given by the formula:
![K_p=K_c(RT)^(\Delta ng)](https://img.qammunity.org/2020/formulas/chemistry/college/3hyfflayag7rybcn4gfgfswtk9q7hbzs1x.png)
where,
= equilibrium constant in terms of partial pressure = 3.45
= equilibrium constant in terms of concentration = ?
R = Gas constant =
![0.0821\text{ L atm }mol^(-1)K^(-1)](https://img.qammunity.org/2020/formulas/chemistry/middle-school/354f5o48msmkxt3pxummq2hqwgirrbozc4.png)
T = temperature = 500 K
= change in number of moles of gas particles =
![n_(products)-n_(reactants)=2-1=1](https://img.qammunity.org/2020/formulas/chemistry/college/kpx5obcglhlm0uvqlequ1uack4nlxbevqo.png)
Putting values in above equation, we get:
![3.45=K_c* (0.0821* 500)^(1)\\\\K_c=(3.45)/(0.0821* 500)=0.084](https://img.qammunity.org/2020/formulas/chemistry/college/dg5lvk9o018xb5o8wf796ovfoizds1mhqn.png)
The equation used to calculate concentration of a solution is:
![\text{Molarity}=\frac{\text{Moles}}{\text{Volume (in L)}}](https://img.qammunity.org/2020/formulas/chemistry/high-school/j6o0gtsv1kbzrfb4oc1z5oyurclwonsjrz.png)
Initial moles of
= 1.00 mol
Volume of the flask = 5.00 L
So,
![\text{Concentration of }(CH_3)_3CCl=(1.00mol)/(5.00L)=0.2M](https://img.qammunity.org/2020/formulas/chemistry/college/m07fu2cexvdt5g7fib5o6n4tz5s9b1ibtx.png)
For the given chemical reaction:
![(CH_3)_3CCl(g)\rightarrow (CH_3)_2C=CH(g)+HCl(g)](https://img.qammunity.org/2020/formulas/chemistry/college/3km44eggs8t2zbf8k3n0lbt1rn3eyeflbg.png)
Initial: 0.2 - -
At Eqllm: 0.2 - x x x
The expression of
for above reaction follows:
![K_c=([(CH_3)_2C=CH]* [HCl])/([(CH_3)_3CCl])](https://img.qammunity.org/2020/formulas/chemistry/college/jiehpvgoiep48m6i8wsruip3pyqgf50ahr.png)
Putting values in above equation, we get:
![0.084=(x* x)/(0.2-x)\\\\x^2+0.084x-0.0168=0\\\\x=0.094,-0.178](https://img.qammunity.org/2020/formulas/chemistry/college/9seuldbigp9l8wwfyp6p5zs8xzmaeuem9e.png)
Negative value of 'x' is neglected because initial concentration cannot be more than the given concentration
Calculating the concentration of reactants and products:
![[(CH_3)_2C=CH]=x=0.094M](https://img.qammunity.org/2020/formulas/chemistry/college/7nviyik7afq0g6wkylir1tk5t4q8tow12l.png)
![[HCl]=x=0.094M](https://img.qammunity.org/2020/formulas/chemistry/college/53k6ducq0tlcho7gudfy2kqype3gx10i3g.png)
![[(CH_3)_3CCl]=(0.2-x)=(0.2-0.094)=0.106M](https://img.qammunity.org/2020/formulas/chemistry/college/llr7c7msq7q27927c7a74c3d888jtw0ju9.png)
Hence, the value of
for the reaction is 6.32 and concentrations of
is 0.094 M, 0.094 M and 0.106 M respectively.