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The activation energy for the bimolecular reaction A+BC→AB+C is E0 in the gas phase. If the reaction is carried out in a confined volume of λ3 , the activation energy is expected to:
  • a)
    Remain unchanged.
  • b)
    Increase with decreasing λ
  • c)
    Decrease with decreasing λ
  • d)
    Oscillate with decreasing λ
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
The activation energy for the bimolecular reaction A+BC→AB+C is ...
The minimum energy requirement that must be met for a chemical reaction to occur is called the activation energy. The activation energy depends on nature of the reacting species or reactants. It does not depends on volume that is it will remain constant irrespective of the volume. 
So, (A) remain unchanged -- is the correct option
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The activation energy for the bimolecular reaction A+BC→AB+C is ...
Explanation:

The activation energy (Ea) of a reaction is defined as the minimum amount of energy required for a reaction to occur. In the case of a bimolecular reaction, the activation energy is the energy required for two molecules to collide with sufficient force and correct orientation to form a product.

Effect of volume on activation energy:

The volume of a reaction mixture affects the rate of reaction and the activation energy. When the volume of a reaction mixture is decreased, the concentration of reactants increases, and the probability of collisions between molecules increases. This leads to an increase in the rate of reaction, but the activation energy remains unchanged.

Reason for activation energy remaining unchanged:

The activation energy is a characteristic of a reaction and is independent of the volume of the reaction mixture. It is determined by the nature of the reactants and the reaction mechanism. Therefore, if the reaction is carried out in a confined volume of 3, the activation energy will remain unchanged.

Conclusion:

In conclusion, the activation energy for a bimolecular reaction is independent of the volume of the reaction mixture. Therefore, if the reaction is carried out in a confined volume of 3, the activation energy will remain unchanged.
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The activation energy for the bimolecular reaction A+BC→AB+C is ...
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The activation energy for the bimolecular reaction A+BC→AB+C is E0 in the gas phase. If the reaction is carried out in a confined volume of λ3 , the activation energy is expected to:a)Remain unchanged.b)Increase with decreasing λc)Decrease with decreasing λd)Oscillate with decreasing λCorrect answer is option 'A'. Can you explain this answer?
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The activation energy for the bimolecular reaction A+BC→AB+C is E0 in the gas phase. If the reaction is carried out in a confined volume of λ3 , the activation energy is expected to:a)Remain unchanged.b)Increase with decreasing λc)Decrease with decreasing λd)Oscillate with decreasing λCorrect answer is option 'A'. Can you explain this answer? for Chemistry 2024 is part of Chemistry preparation. The Question and answers have been prepared according to the Chemistry exam syllabus. Information about The activation energy for the bimolecular reaction A+BC→AB+C is E0 in the gas phase. If the reaction is carried out in a confined volume of λ3 , the activation energy is expected to:a)Remain unchanged.b)Increase with decreasing λc)Decrease with decreasing λd)Oscillate with decreasing λCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for Chemistry 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The activation energy for the bimolecular reaction A+BC→AB+C is E0 in the gas phase. If the reaction is carried out in a confined volume of λ3 , the activation energy is expected to:a)Remain unchanged.b)Increase with decreasing λc)Decrease with decreasing λd)Oscillate with decreasing λCorrect answer is option 'A'. Can you explain this answer?.
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