Q.Consider the Arrhenius equation given below and mark the correct option.
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Start your 14-day free trial to unlock the full solution →The Arrhenius equation shows that the rate constant depends on activation energy and temperature through an exponential factor . A lower and a higher both make the exponent less negative, so increases. The correct option is (iv).
The Arrhenius equation is one of the most elegant relationships in chemical kinetics. It tells us how the rate constant — the speedometer of a reaction — changes with two key factors: the activation energy barrier and the temperature . The equation is:
Here, is the pre-exponential factor (a constant for a given reaction), is the gas constant, and the exponential term is the fraction of molecules that have enough energy to overcome the barrier.
The core idea: the exponent is negative, so anything that makes less negative (i.e., closer to zero) will make larger, and hence larger. Let’s see how and affect this.
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Effect of activation energy
The exponent is . If is large, the negative number is more negative, so is very small — is small. If is small, the negative number is less negative, so is larger — is larger.
So: decreasing increases (exponentially, because sits in the exponent).
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Effect of temperature
appears in the denominator of the exponent. If increases, the fraction becomes smaller, so becomes less negative, and increases — increases.
So: increasing increases (again, exponentially).
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Putting it together
The rate constant increases exponentially when:
- Activation energy decreases
- Temperature increases …
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