The rate of reaction between two reactants A and B decreases by a factor of 4 if the concentration of reactant B is doubled. The order of this reaction with respect to reactant B is:

1. 2

2. –1

3. 1

4. –2

Subtopic:  Order, Molecularity and Mechanism |
 78%
Level 2: 60%+
AIPMT - 2005
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For a first-order reaction A → B the reaction rate at a reactant concentration of 0.01M is found to be 2.0×105 mole L1s1. The half-life period of the reaction is:

1. 300s 2. 30s
3. 220s 4. 347s
Subtopic:  First Order Reaction Kinetics |
 85%
Level 1: 80%+
AIPMT - 2005
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If the concentration of a solution is changed from 0.2 to 0.4, then what will be rate and rate constant. The reaction is of first order and rate constant is K=1×10-6

1. 2×10-7 ; 1×10-6

2. 1×10-7 ; 1×106

3. 4×10-7 ; 1×10-6

4. 2×10-3 ; 1×10-3

Subtopic:  First Order Reaction Kinetics |
Level 3: 35%-60%
AIPMT - 1999
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Find the amount of a radioactive substance remaining undecayed after 16 days, given that its half-life is 4 days.

1. 14

2. 18

3. 116

4. 132

Subtopic:  First Order Reaction Kinetics |
 75%
Level 2: 60%+
AIPMT - 1999
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The rate of a first-order reaction is 1.5 ×10–2 mol L–1 min–1 at 0.5 M concentration of the reactant. The half-life of the reaction is:

1. 23.1 min 2. 8.73 min
3. 7.53 min 4. 0.383 min
Subtopic:  First Order Reaction Kinetics |
 81%
Level 1: 80%+
AIPMT - 2004
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If the bombardment of α-particle on \(N_{7}^{14}\)  emits protons, then new atom will be:
1. \(O_{8}^{17}\)

2. \(O_{8}^{16}\)

3. \(C_{6}^{14}\)

4. Ne

Subtopic:  First Order Reaction Kinetics |
 50%
Level 3: 35%-60%
AIPMT - 1999
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What is the decay constant (in days⁻¹) of a substance whose half-life is 77 days?

1. 0.9 2. 0.09
3. 0.009 4. 0.013
Subtopic:  First Order Reaction Kinetics |
 72%
Level 2: 60%+
AIPMT - 1999
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Consider the given reaction: 
\(H^{+}+BrO^-_3+3Br^- \rightarrow~5Br_2+H_2O\)
What is the correct representation of the consumption & formation of reactants and products?
1. d[Br-]dt=-35d[Br2]dt 2. d[Br-]dt=35d[Br2]dt
3. d[Br-]dt=-53d[Br2]dt 4. d[Br-]dt=53d[Br2]dt
Subtopic:  Definition, Rate Constant, Rate Law |
 74%
Level 2: 60%+
AIPMT - 2000
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92U235, nucleus absorb a neutron and disintegrate in 54Xe139, 38Sr94 and x . The product x is:

1. 3 - neutrons

2. 2 - neutrons

3. α - particle

4. β - particle

Subtopic:  First Order Reaction Kinetics |
Level 3: 35%-60%
AIPMT - 2002
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In the reaction, 3A2B the rate of reaction +d[B]dt  is equal to:-

1. -32d[A]dt

2. -23d[A]dt

3. -13d[A]dt

4. +2d[A]dt

Subtopic:  Definition, Rate Constant, Rate Law |
 89%
Level 1: 80%+
AIPMT - 2002
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