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The order of reaction can never be zero....

The order of reaction can never be zero.

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Knowledge Check

  • Order of a reaction can be 0,1,2,3…….. II Order of a reaction can never be a fraction . which of the above statement is true ? Choose the correct option.

    A
    Only I
    B
    Only II
    C
    Both I and II
    D
    Neither I nor II
  • Assertion: Order of reaction can never be fractional for an elementary reaction. Reason: An elementary reaction takes place by one step mechanism.

    A
    If both assertion and reason are true and the reason is the correct explanation of the assertion.
    B
    If both assertion and reason are true but the reason is not the correct explanation of the assertion.
    C
    If assertion is true but reason is false.
    D
    If assertion is false but reason is true.
  • STATEMENT-1 : Order of reaction can never be fractional for an elementary reaction. and STATEMENT-2 : Elementary reactions take place by one step mechanism

    A
    STATEMENT-1 is True, STATEMENT-2 is True, STATEMENT-2 is correct explanation for STATEMENT-1
    B
    STATEMENT-1 is True, STATEMENT-2 is True, STATEMENT-2 is NOT a correct explanation for STATEMENT-1
    C
    STATEMENT-1 True, STATEMENT-2 is False
    D
    STATEMENT-1 is False, STATEMENT-2 is True
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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.

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

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

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