Find Kc for the equilibrium:
2H₂S(g) ⇌ 2H₂(g) + S₂(g)
An equilibrium mixture contains 1.0 mol H₂S, 0.2 mol H₂, and 0.8 mol S₂ in a 2.0 L flask.
1. 0.08
2. 0.016
3. 0.004
4. 0.160
1.25 moles of NOCl were placed in a 2.50 L reaction chamber at After equilibrium was reached, 1.10 moles of NOCl remained. Calculate the equilibrium constant Kc for the reaction,
1.
2.
3.
4.
Find the acid dissociation constant (Kₐ) of HXO given that:
XO⁻(aq) + H₂O(l) ⇌ HXO(aq) + OH⁻(aq)
K = 0.36 × 10⁻⁶
1. 0.36 × 10⁻⁸
The equilibrium constant value for the reaction , the value for the reaction where n is
1. 1.85
2. 3.85
3. 4.85
4. 10
A gaseous phase reaction is allowed to attain equilibrium as at constant pressure P. The partial pressure of A at equilibrium is P/2. The value of equilibrium constant Kp is
1.
2.
3.
4.
Two moles of N2O4 is heated to form NO and O2. As soon as NO and O2 are formed they react to form N2O5. Two equilibria
Are simultaneously established. At equilibrium, the degree of dissociation of N2O4 was found to 50%. Which of the following is correct at equilibrium?
1.
2.
3.
4.
Find Kₚ for the following equilibrium at 25°C:
NH₄HS(s) ⇌ NH₃(g) + H₂S(g)
The total equilibrium pressure is 0.660 atm.
1. 0.109
2. 0.218
3. 1.89
4. 2.18
PCl5 is 50% dissociated at and 1 atm pressure. The value of Kp for this reaction is:
| 1. | 0.444 | 2. | 0.555 |
| 3. | 0.333 | 4. | 0.666 |
Find the equilibrium concentrations of SO₂ and SO₃ for the reaction:
SO₂(g) + NO₂(g) ⇌ SO₃(g) + NO(g)
Given Kc = 16. Initially, 1 mol each of SO₂, NO₂, SO₃ and NO is taken in a 1 L vessel.
1. 0.4, 0.8
2. 0.8, 0.16
3. 1.6, 0.8
4. 0.4, 1.6
The ratio of \({{K_{P}}\over{K_{C}}}\) for the reaction
| 1. | (RT)1/2 | 2. | (RT)-1/2 |
| 3. | RT | 4. | 1 |