Match the column I with column II and mark the appropriate choice:
Column I:
 
Column II:
 
(A) Zero order (i) \(k=Ae^{-E_a/RT}\)
(B) First order (ii)
(C) Endothermic reaction (iii) \( k=\frac{2.303}{t} \log \frac{[A]_0}{[A]} \)
(D) Arrhenius equation (iv) \( k=\frac{1}{t}\left([A]_0-[A]\right)\)

1. (A) →(iv), (B)→(iii), (C) →(ii), (D)→ (i)
2. (A) →(i), (B)→(ii), (C) →(iii), (D)→ (iv)
3. (A) →(ii), (B)→(iii), (C) →(iv), (D)→ (i)
4. (A) →(iii), (B)→(iv), (C) →(i), (D)→ (ii)
Subtopic:  First Order Reaction Kinetics | Arrhenius Equation |
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Level 1: 80%+
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For a first-order reaction, A → B; t1/2 is 30 minutes. The time in minutes required for 75 % completion of the reaction is:

1. 50 min.
2. 60 min
3. 40 min
4. 30 min
Subtopic:  First Order Reaction Kinetics |
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Which of the following is the mass of a radioisotope remaining undecayed after 24 hours, if its half-life is 4 hours and the initial mass is 200 g?

1. 1.042 g
2. 2.084 g
3. 3.125 g
4. 4.167 g

Subtopic:  First Order Reaction Kinetics |
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Which of the following represents the factor by which the rate of a zero-order reaction increases when the temperature is raised from 10°C to 100°C, if the rate doubles for every 10°C rise in temperature?

1. 256 times

2. 512 times

3. 64 times

4. 128 times

Subtopic:  First Order Reaction Kinetics |
 86%
Level 1: 80%+
AIPMT - 2012
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An example of a pseudo-first-order reaction among the following is:
1.  Inversion of cane sugar 
2.  Radioactive decay 
3.  Hydrogenation of ethene 
4.  Decomposition of gaseous ammonia on a hot platinum surface at high pressure
Subtopic:  First Order Reaction Kinetics |
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Which of the following graph is correct for a first-order reaction \(A(g) \rightarrow B(g) \)
 
1. 2.
3. 4.
Subtopic:  First Order Reaction Kinetics |
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The correct statements among the following regarding a balanced chemical equation of an elementary reaction are-

a. Order is the same as molecularity.
b. Order is less than the molecularity.
c.  Order is greater than molecularity.
d.  Molecularity can never be zero.


1. (a, b)
2. (b, c)
3. (c, d)
4. (a, d)

Subtopic:  First Order Reaction Kinetics |
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Level 1: 80%+
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Which of the following is the ratio of time required for 87.5% completion (\((t_{87.5\%})\)​) to the half-life (\((t_{50\%})\)​) for a first-order reaction?

1. 4
2. 6
3. 3
4. 5
Subtopic:  First Order Reaction Kinetics |
 83%
Level 1: 80%+
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A first-order reaction has a rate constant of 2.303 × 10¯1. The time required for 40 g of this reactant to reduce to 10 g will be
[Given that log102=0.3010]

1. 230.3 s 2. 301 s
3. 2000 s 4. 602 s
Subtopic:  First Order Reaction Kinetics |
 84%
Level 1: 80%+
NEET - 2019
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For a first order reaction A→B, the reaction rate at reactant concentration of 0.01M is found to be
2.0×10-5 mol L-1s-1. The half-life period of the reaction is:

1. 220 s 2. 30 s
3. 300 s 4. 347 s
Subtopic:  First Order Reaction Kinetics |
 83%
Level 1: 80%+
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