In a saturated solution of the sparingly soluble electrolyte AgIO3 (molecular mass = 283) the equilibrium is represented by–
AgIO3(s)Ag+(aq)+IO3-(aq)
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

Subtopic:  Solubility Product |
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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
Subtopic:  Kp, Kc & Factors Affecting them |
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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
 

Subtopic:  pH calculation |
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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

Subtopic:  Kp, Kc & Factors Affecting them |
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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. K2K3=K1

2. K3=K1K2

3. K3K23=K12

4. K1K2=K3

Subtopic:  Introduction To Equilibrium |
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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

Subtopic:  pH calculation |
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The exothermic formation of ClF3 is represented by the equation:
Cl2g+3F2g2ClF3g;Hr=-329kJ
Which of the following will increase the quantity of ClF3 is an equilibrium mixture of Cl2, F, and ClF3?

1. Adding F2

2. Increasing the volume of the container

3. Removing Cl2

4. Increasing the temperature

Subtopic:  Le Chatelier's principle |
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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.  \(\left(\frac{x}{1-x}\right) P\)

Subtopic:  Introduction To Equilibrium |
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The conjugate base of \(H_2PO_{4}^{-}\) is:

1. \(PO_{4}^{3-}\)

2. \(P_2O_5\)

3. \(H_3PO_4\)

4. \(HPO_{4}^{2-}\)

Subtopic:  Acids & Bases - Definitions & Classification |
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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. \(2 \times 10^{-2}\)
Subtopic:  Kp, Kc & Factors Affecting them |
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