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Under the same reaction conditions, the ...

Under the same reaction conditions, the intial concentration of `1.386 mol dm^(-3)` of a substance becomes half in `40 s` and `20 s` theough first order and zero order kinetics, respectively.
The ratio `(k_(1)//k_(0))` of the rate constants for first order `(k_(1))` and zero order `(k_(0))` of the reaction is

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Under the same reaction conditions, the intial concentration of 1.386 mol dm^(-3) of a substance becomes half in 40 s and 20 s for first order and zero order kinetics, respectively. The ratio (k_(1)//k_(0)) of the rate constants for first order (k_(1)) and zero order (k_(0)) of the reaction is

Under the same reaction conditions intital concentration of 1.386 mol dm^(-3) of a substance becomes half in 40 and 20 through first order and zero order kinetics respectively ratio (k_(1)//k_(0)) of the rate constants for first order k_(1) and zero order k_(0) of the reaction is

Under the same reaction conditions, intial concentration of 1.386 mol dm^(-1) of a substance becomes half in 40 s and 20 s through first order and zero order kinetics respectively. Ratio ((k_1)/(k_0)) of the rate constants for first order (k_1) and zero order (k_0) of the reaction is