Home
Class 11
CHEMISTRY
a. For which of the following reactions,...

a. For which of the following reactions, `K_(p)` is equal to `K_(c)` ?
i. `H_(2)+I_(2)hArr2HI`
ii. `N_(2)+3H_(2)hArr2NH_(3)`
iii. `PCl_(5)hArrPCl_(3)+Cl_(2)`
b. For which of the following cases does the reaction go garthest to completion:
`K=1, K=10^(10), K=10^(-10)`?

Text Solution

Verified by Experts

`H_(2)+I_(2)hArr2HI` only
`Deltan=2-2=0`
i.e., equation (iii) reduces to `K_(p)=K_(c )`.
b. The reaction having `K=10^(10)` will go fathest to complection because the ratio [product]`//`[reactant] is maximum in this case [Eqn. (1)].
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL EQUILIBRIUM

    CENGAGE CHEMISTRY|Exercise Concept Applicationexercise 7.1|53 Videos
  • CHEMICAL EQUILIBRIUM

    CENGAGE CHEMISTRY|Exercise Ex 7.2|40 Videos
  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    CENGAGE CHEMISTRY|Exercise Archives Subjective|15 Videos
  • CLASSIFICATION AND NOMENCLATURE OF ORGANIC COMPOUNDS

    CENGAGE CHEMISTRY|Exercise Analytical and Descriptive Type|3 Videos

Similar Questions

Explore conceptually related problems

For which of the following cases does the reaction go farthest to completion K=1 , k=10^(10), K=1^(-10) ?

In which case does the reaction go farthest to completion ? (i) K_1=10^15 , (ii) K_2=10^3 , (iii) K_3=10^(-5) ?

From the values of the equilibrium constants, indicate in which case, does not reaction go farthest to completion : K_1=10^(-10),K_2=10^(10),K_3=10^(5) .

Write the relation between K_(p) " and " K_(c) for the reaction: N_(2)(g) +3H_(2) (g) hArr 2NH_(3)(g)

Give the mathematical expression for the equlibrium constant (K_(c) " and " K_(p)) for the ractions (i) H_(2)(g) + I_(2)(g) hArr2HI(g) (ii) N_(2)(g) +3H_(2)(g) hArr 2NH_(3)(g) (iii) PCl_(5)(g) hArr PCl_(3)(g)+Cl_(2)(g)

Write the relation between k_p and K_c for the following reactions. (i) N_2(g) +3H_2(g) hArr 2NH_3(g) (ii) 2H_2O(g) hArr 2H_2(g) +O_2(g)

Write the relation between K_(p)and K_(c) for the following reactions (i) N_(2)(g)+3H_(2)(g)hArr2H_(2)(g)+O_(2)(g) (ii) 2H_(2)O(g)hArr2H_(2)(g)+O_(2)(g)