Q.Which of the following statements is not correct about order of a reaction.
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Start your 14-day free trial to unlock the full solution →The order of a reaction is defined from the experimentally determined rate law, not from the balanced chemical equation — so statement (iii) is false; the correct answer is (iii).
The concept of reaction order is one of the first places where physical chemistry forces you to think like an experimentalist, not a mathematician. Many students instinctively want to "read off" the order from the balanced equation — after all, stoichiometric coefficients look like exponents. But that's a trap. The rate law is a purely empirical relationship: it tells you how the rate actually depends on concentration, not how you'd expect it to depend from the reaction's stoichiometry.
Let's examine each statement carefully.
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Statement (i): "The order of a reaction can be a fractional number."
This is correct. Orders like , , or even are common. For example, the decomposition of acetaldehyde (CHCHO) has order . The rate law is determined by the mechanism, not by integer stoichiometry. So (i) is true.
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Statement (ii): "Order of a reaction is experimentally determined quantity."
Also correct. You cannot predict the order from the balanced equation alone — you must measure how the initial rate changes when you vary the concentration of each reactant. That's the whole point of the method of initial rates. So (ii) is true.
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Statement (iii): "The order of a reaction is always equal to the sum of the stoichiometric coefficients of reactants in the balanced chemical equation for a reaction."
This is the false one. It would only be true for elementary reactions — reactions that occur in a single step. But most reactions are multi-step, and the rate law is determined by the slowest step (the rate-determining step), which may involve different species or different coefficients than the overall balanced equation. For example, the reaction
has a rate law , which happens to match the stoichiometric coefficients — but that's a coincidence. In contrast, the reaction
…
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