For the following equilibrium PCl_(5)(g) hArr PCl_(3)(g)+Cl_(2)(g) K_(p) is formed to be equal to K_(x ) . This is attained at
For the reaction, PCl_(5)(g)to PCl_(3)(g)+Cl_(2)(g)
For PCl_(5)(g)hArrPCl_(3)(g)+Cl_(2)(g), write the expression of K_(c)
For the following gases equilibrium, N_(2)O_(4)(g)hArr2NO_(2)(g) K_(p) is found to be equal to K_(P) . This is attained when:
For the equilibrium PCl_(5)hArr PCl_(3)(g)+Cl_(2)(g) at 298 K, K_(p)=1.8xx10^(-7) . What is Delta G^(@) for the reaction ?
a' moles of PCl_(5) are heated in a closed container to equilibrate PCl_(5) (g) hArr PCl_(3)(g) + Cl_(2) (g) at a pressure of p atm . If x moles of PCl_(5) dissociate at equilibrium , then
For reaction PCl_(3)(g)+Cl_(2)(g) hArr PCl_(5)(g), K_(c) is 30 at 300 K . The value of K_(p) at 300K is …………