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For the reaction 2AtoB+3C, if -(d[A])/(...

For the reaction `2AtoB+3C`, if `-(d[A])/(dt)=k_(1)[A]^(2),-(d[B])/(dt)=k_(2)[A]^(2),-(d[C])/(dt)=k_(3)[A]^(2)` the correct reaction between `k_(1),k_(2)` and `k_(3)` is :

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3BrO^(-) to BrO_(3)^(-) + 3Br^(-) If -(d[BrO^(-)])/(dt) = k_(1) [BrO^(-)]^(2), +(d[BrO_(3)^(-)])/(dt) =k_(2)[BrO^(-)]^(2) + (d[Br^(-)])/(dt) =k_(3)[BrO^(-)]^(2) , the correct relation between k_(1),k_(2) and k_(3) is

For the reactions : 4KClO _(3) rarr 3KClO_(4)+KCl if " "-(d[KClO_(3)])/(dt)=k_(1)[KClO_(3)]^(4) (d[KClO_(4)])/(dt)=k_(2)[KClO_(3)]^(4) (d[KCl])/(dt)=k_(3)[KClO_(3)]^(4) the correct relation between k_(1),k_(2) & k_(3) is :

The reaction -rate of the reaction AB_(3)rarr(1)/(2)A_(2)+(3)/(2)B2 can be expressed by any one of the following equations : (-d[AB_(3)])/(dt)=k_(1)[AB_(3)], (d[A_(2)])/(dt)=k_(2)[AB_(3)] " or, " (d[B_(2)])/(dt)=k_(3)[AB_(3)] The ratio between k_(1) , k_(2)and k_(3) is -

For the reaction, 2NH_(3)rarr N_(2)+3H_(2) if (-d[NH_(3)])/(dt)=k_(1)[NH_(3)] , (d[N_(2)])/(dt)=k_(2)[NH_(3)], (d[H_(2)])/(dt)=k_(3)[NH_(3)] then the relation between k_(1), k_(2) and k_(3) is

2N_(2)O_(5)rarr 4NO_(2)+O_(2),(d[N_(2)O_(5)])/(dt)=k_(1)[N_(2)O_(5)] . (d[NO_(2)])/(dt)=k_(2)[N_(2)O_(5)] and (d[O_(2)])/(dt)=k_(3)[N_(2)O_(5)] , the relation between k_(1), k_(2) and k_(3) is

2N_(2)O_(5)rarr 4NO_(2)+O_(2),(d[N_(2)O_(5)])/(dt)=k_(1)[N_(2)O_(5)] . (d[NO_(2)])/(dt)=k_(2)[N_(2)O_(5)] and (d[O_(2)])/(dt)=k_(3)[N_(2)O_(5)] , the relation between k_(1), k_(2) and k_(3) is

2N_(2)O_(5)rarr NO_(2)+O_(2), (d[N_(2)O_(5)])/(dt)=k_(1)[N_(2)O_(5)], (d[NO_(2)])/(dt)=k_(2)[N_(2)O_(5)] and (dO_(2))/(dt)=k_(3)[N_(2)O_(5)] , the relation between k_(1), k_(2) and k_(3) is