In a saturated solution of the sparingly soluble electrolyte AgIO3 (molecular mass = 283) the equilibrium is represented by–
If the solubility product constant Ksp of AgIO3 at a given temperature is 1.0 × 10-8, Calculate the mass of AgIO3 contained in 100 ml of its saturated solution.
1. 28.3 × 10–2 g
2. 2.83 × 10–3 g
3. 1.0 × 10–7 g
4. 1.0 × 10–4 g
The first and second dissociation constants of an acid H2A are 1.0 × 10–5 & 5.0 × 10–10 respectively. The overall dissociation constant of the acid will be :
| 1. | 5.0 × 10–5 | 2. | 5.0 × 1015 |
| 3. | 5.0 × 10–15 | 4. | 0.2 × 105 |
The pKa of a weak acid (HA) is 4.5. The pOH of an aqueous buffered solution of HA in which 50 % of the acid is ionized is:
1. 4.5
2. 2.5
3. 9.5
4. 7.0
The equilibrium constants, \(\mathrm{Kp}_1 \text { and } \mathrm{Kp}_2\) for the reactions \(\mathrm{X} \rightleftharpoons 2 \mathrm{Y} \text { and } \mathrm{Z} \rightleftharpoons \mathrm{P}+\mathrm{Q},\) are given as 1:9.
Assuming equal degrees of dissociation for both X and Z, what is the ratio of total pressures at equilibrium?
1. 1 : 1
2. 1 : 3
3. 1 : 9
4. 1 : 36
For the three reactions (a, b, and c) listed below, the equilibrium constants are provided:
(a). CO(g) + H2O(g) ⇌ CO2(g) + H2(g); K1
(b). CH4(g) + H2O(g) ⇌ CO(g) + 3H2(g); K2
(c). CH4(g) + 2H2O(g) ⇌ CO2(g) + 4H2(g); K3
Which of the following relations is correct?
1.
2.
3.
4.
The pKa of a weak acid HA, is 4.80. The pKb of a weak base BOH, is 4.78. The pH of an aqueous solution of the corresponding salt, BA, will be:
1. 4.79
2. 7.01
3. 9.22
4. 9.58
The exothermic formation of ClF3 is represented by the equation:
Which of the following will increase the quantity of ClF3 is an equilibrium mixture of Cl2, F2 , and ClF3?
1. Adding F2
2. Increasing the volume of the container
3. Removing Cl2
4. Increasing the temperature
In a closed reaction vessel, Phosphorus pentachloride dissociates as follows:
\(\mathrm{PCl}_{5}(g) \rightleftharpoons \mathrm{PCl}_{3}(g)+\mathrm{Cl}_{2}(g)\)
If the total pressure at equilibrium of the reaction mixture is P and the degree of dissociation of PCl5 is x, the partial pressure of PCl3 will be:
1. \(\left(\frac{x}{x+1}\right) P\)
2. \(\left(\frac{2x}{x-1}\right) P\)
3. \(\left(\frac{x}{x-1}\right) P\)
4. \(\left(\frac{x}{1-x}\right) P\)
The conjugate base of \(H_2PO_{4}^{-}\) is:
1. \(PO_{4}^{3-}\)
2. \(P_2O_5\)
3. \(H_3PO_4\)
4. \(HPO_{4}^{2-}\)
The equilibrium constant for the reaction
\(\mathrm{N}_{2}(g)+\mathrm{O}_{2}(g) \rightleftharpoons 2 \mathrm{NO}(g)\)
at temperature T is \(4 \times 10^{-4}\) . The value of Kc for the reaction,
\(\mathrm{{NO}}(g) \rightleftharpoons \frac{1}{2} \mathrm{{~N}_{2}}(g)+\frac{1}{2} \mathrm{O}_{2}(g)\)at the same temperature) is:
| 1. | \(2.5 \times 10^{2}\) | 2. | \(5 \times 10^{1}\) |
| 3. | \(4 \times 10^{-4}\) | 4. | \(2 \times 10^{-2}\) |