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Q.The unit of the rate of reaction is the same as that of the rate constant for a: (A) first order reaction (B) second order reaction (C) zero order reaction (D) it cannot be same

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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For a zero order reaction, the rate is independent of concentration and equals the rate constant itself, so both have the same units (e.g., mol L⁻¹ s⁻¹). The correct option is (C).

Why This Question Tests Your Understanding of Order

The trick here is not about memorising formulas — it's about what "order" actually means for the units. The rate of a reaction always has units of concentration per time (like mol L−1s−1\text{mol L}^{-1} \text{s}^{-1}). But the rate constant's units change depending on the order, because the rate law includes concentration terms raised to different powers.

For a general reaction of order nn, the rate law is:

Rate=k[reactant]n\text{Rate} = k [\text{reactant}]^n

If you rearrange for kk:

k=Rate[reactant]nk = \frac{\text{Rate}}{[\text{reactant}]^n}

So the units of kk are:

Units of k=concentration⋅time−1(concentration)n=(concentration)1−n⋅time−1\text{Units of } k = \frac{\text{concentration} \cdot \text{time}^{-1}}{(\text{concentration})^n} = (\text{concentration})^{1-n} \cdot \text{time}^{-1}

Now, the question asks: when are the units of the rate and the rate constant the same? That happens when the rate law has no concentration dependence — meaning n=0n = 0.

Step-by-Step Reasoning

  1. Write the general relationship.

    For any reaction of order nn, the rate is r=k[A]nr = k [A]^n. The rate rr always has units of concentration⋅time−1\text{concentration} \cdot \text{time}^{-1} (e.g., mol L−1s−1\text{mol L}^{-1} \text{s}^{-1}).

  2. Find when kk has the same units as rr.

    For kk to have the same units as rr, the factor [A]n[A]^n must be dimensionless — i.e., n=0n = 0. Then r=k[A]0=kr = k [A]^0 = k, so the rate literally equals the rate constant.

  3. Check each option.

    • (A) First order (n=1n=1): kk has units of time−1\text{time}^{-1} (e.g., s−1\text{s}^{-1}), different from rate.
    • (B) Second order (n=2n=2): kk has units of concentration−1⋅time−1\text{concentration}^{-1} \cdot \text{time}^{-1} (e.g., L mol−1s−1\text{L mol}^{-1} \text{s}^{-1}), different. …

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