For the reaction $${N_{2\left( g \right)}} + {O_{2\left( g \right)}} \rightleftharpoons 2N{O_{\left( g \right)}},$$ the value of $${K_c}$$ at $$800{\,^ \circ }C$$ is 0.1. What is the value of $${K_p}$$ at this temperature?
A.
0.5
B.
0.01
C.
0.05
D.
0.1
Answer :
0.1
Solution :
$$\eqalign{
& {N_{2\left( g \right)}} + {O_{2\left( g \right)}} \rightleftharpoons 2N{O_{\left( g \right)}};{K_c} = 0.1 \cr
& \Delta n = 0,{\text{hence,}}\,{K_p} = {K_c} \cr} $$
Releted MCQ Question on Physical Chemistry >> Chemical Equilibrium
Releted Question 1
For the reaction : $${H_2}\left( g \right) + {I_2}\left( g \right) \rightleftharpoons 2HI\left( g \right)$$ the equilibrium constant $${K_p}$$ changes with