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Order of reaction cannot be fractional....

Order of reaction cannot be fractional.

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To determine whether the statement "Order of reaction cannot be fractional" is true or false, we can analyze the concept of reaction order and provide an example to illustrate our findings. ### Step-by-Step Solution: 1. **Understanding Reaction Order**: - The order of a reaction is defined as the sum of the powers of the concentration terms in the rate law expression. It is an experimental quantity, meaning it is determined through experiments rather than being deduced from the stoichiometry of the reaction. 2. **Rate Law Expression**: ...
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Assertion (A) : The order of a reaction can be fractional but molecularity is never fractional. Reason (R ): The order of reaction does not depend upon the stoichiometric coefficients of a balanced equation.

Each question contains STATEMENTS-1 (Assertion) and STATEMENT -2 (Reason). Examine the statements carefully and mark the correct answer according to the instructions given below: STATEMENT-1: The order of reaction can have fractional value. STATEMENT-2: For an elementary reaction, the parial orders are determined by the reaction stoichiometry

The order of reaction may be a fractional number.

A : The molecularity of reaction can never be fractional. R : Molecularity is the number of molecules needed to form activated complex, which will never be fractional.

Each question contains STATEMENTS-1 (Assertion) and STATEMENT -2 (Reason). Examine the statements carefully and mark the correct answer according to the instructions given below: STATEMENT-1: An elementry reaction cannot have fractional order. STATEMETNT-2:Stoichiometric coefficients in an elementary reaction can be fractional.

Assertion (A) Order of the reaction can be zero or fractional. Reason (R) We cannot determine order from balanced chemical equation.

Give an example of a reaction having fractional order.

Define " Order of a reaction" and " Activation energy of a reaction " .

Define the term 'order of reaction' for chemical reactions.

Half life of a first order reaction and a zero order reaction are same. Then the ratio of the initial rate of the first order reaction to that of zero order reaction is