If the rates of a reaction are \( \mathrm{R}_{1} \) and \( \mathrm{R}_{2} \) at concentration \(...

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If the rates of a reaction are \( \mathrm{R}_{1} \) and \( \mathrm{R}_{2} \) at concentration \( \mathrm{C}_{1} \) and \( \mathrm{C}_{2} \) of a reactant respectively, the order of reaction \( n \) (assuming that the concentrations of all other reactions and \( \mathrm{T} \) remains constant) with respect to that reactant is given by
(a) \( \mathrm{n}=\frac{\log \mathrm{R}_{1}-\log \mathrm{R}_{2}}{\log \mathrm{C}_{1}-\log \mathrm{C}_{2}} \)
(b) \( \mathrm{n}=\frac{\log \mathrm{C}_{1}-\log \mathrm{C}_{2}}{\log \mathrm{R}_{1}-\log \mathrm{R}_{2}} \)
(c) \( \mathrm{n}=\frac{\log \mathrm{C}_{1}-\log \mathrm{R}_{1}}{\log \mathrm{C}_{1}-\log \mathrm{R}_{2}} \)
(d) \( \mathrm{n}=\frac{\log \mathrm{C}_{2}-\log \mathrm{R}_{2}}{\log \mathrm{C}_{1}-\log \mathrm{R}_{1}} \)
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