Assertion : The reaction,

N2 (10atm) 3H2 (10atm) 2NH3 (g) is faster.

Reason : Catalyst lowers the activation energy of the reaction.

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false

Subtopic:  Arrhenius Equation |
 52%
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Assertion : Molecularity of a reaction cannot be determined experimentally.

Reason : Molecularity is assigned to the reactions on the basis of mechanism.

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Order, Molecularity and Mechanism |
 58%
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Assertion : For a first order reaction, the degree of dissocation is equal to 1-e-kt

Reason  : For a first order reaction, the pre-exponential factor in the Arrhenius equation has the dimension of time-1

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Arrhenius Equation |
 62%
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At 400 K, the energy of activation of a reaction is decreased by 0.8 kcal in the presence of a catalyst. As a result, the rate will be:

1. Increased by 2.71 times. 2. Increased by 1.18 times.
3. Decreased by 2.72 times. 4. Increased by 6.26 times.
Subtopic:  Arrhenius Equation |
 56%
From NCERT
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If H of a reaction is 100 kJ mol-1, then the activation energy for the forward reaction must be

1. Greater than 100 kJ mol-1

2. Less than 100 kJ mol-1

3. Equal to 100 kJ mol-1

4. None of the above.

Subtopic:  Arrhenius Equation |
 76%
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Assertion : Liquid bromine reacts slowly as compared to bromine vapour.

Reason : In liquid bromine, the bromine molecules are held together by a force which is much weaker than the force existing between the two molecules of bromine in the vapour phase.

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Definition, Rate Constant, Rate Law |
 57%
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Assertion : A lump of coal burns at a moderate rate in air while coal dust burns explosively.

Reason : Coal dust contains very fine particles of carbon.

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Definition, Rate Constant, Rate Law |
 75%
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The following data were obtained during the first-order thermal decomposition of SO2Cl2 at a constant volume.

SO2Cl2(g) → SO2(g) + Cl2(g)

Experiment Time/s Total pressure/atm
1 0 0.5
2 100 0.6

The rate of the reaction when total pressure is 0.65 atm will be:

1. 7.8 × 10-4 s-1 atm.                                  

2. 0.8 × 10-4 s-1 atm.

3. 2.4 × 10-2 s-1 atm.                                   

4. 6.1 × 10-8 s-1 atm.

Subtopic:  First Order Reaction Kinetics |
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Two substances A and B are present such that [A0] = 4[B0] and half life of A is 5 minute and that of B
is 15 minute. If they start decaying at the same time following first order kinetics how much time later will the concentration of both of them would be same.

(1) 15 minute                                        

(2) 10 minute

(3) 5 minute                                          

(4) 12 minute

Subtopic:  First Order Reaction Kinetics |
 69%
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The half-life for radioactive decay of 14C is 5730 y. An archaeological artifact containing wood had only 80 % of the 14C found in a living tree. The age of the sample will be:

1. 1657.3 y                                                

2. 1845.4 y

3. 1512.4 y                                                

4. 1413.1 y

Subtopic:  First Order Reaction Kinetics |
 69%
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