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|{:([A],[B],"Initial Rate"),(0.05,0.05,0...

`|{:([A],[B],"Initial Rate"),(0.05,0.05,0.045),(0.10,0.05,0.09),(0.20,0.10,0.72):}|` for `2A+BtoC`. Find the rate low

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|{:([A],[B],"Initial Rate"),(0.05,0.05,0.045),(0.10,0.05,0.09),(0.20,0.10,0.72):}| for 2A+BtoC . Find the rate law

For the reaction 2A+BrarrC , the values of initial rate at different reactant concentrations are given in the table below. The rate law for the reaction is : {:([A]("mol"L^(-1)),[B]("mol"L^(-1)),{:("Initial Rate"),("mol"^(-1)s^(-1)):}),(0.05,0.05,0.045),(0.10,0.05,0.090),(0.20,0.10,0.72):}

0.5x0.05 = ?

Select the rate law that corresponds to the datashown for the reaction A+BtoC {:(,Exp.,[A],[B],Rate),(,1,0.012,0.035,0.10),(,2,0.024,0.070,0.80),(,3,0.024,0.035,0.10),(,4,0.012,0.070,0.80):} a) Rate= k[B]^(3) b) Rate= k[B]^(4) c) Rate k= [A][B]^(3) d) Rate =k [A]^(2)[B]^(2)

Select the rate law that corresponds to the datashown for the reaction A+BtoC {:(,Exp.,[A],[B],Rate),(,1,0.012,0.035,0.10),(,2,0.024,0.070,0.80),(,3,0.024,0.035,0.10),(,4,0.012,0.070,0.80):}

Select the rate law that corresponds to the datashown for the reaction A+BtoC {:(,Exp.,[A],[B],Rate),(,1,0.012,0.035,0.10),(,2,0.024,0.070,0.80),(,3,0.024,0.035,0.10),(,4,0.012,0.070,0.80):}

The bromination of acetone that occurs in acid solution is represented by this equation. CH_(3)COCH_(3)Br(aq)+Br_(2)(aq) to CH_(3)COCH_(2)Br(aq)+H^(+)(aq)+Br^(-)(aq) These kinetic data were obtained for given reaction concentrations. Initial concentrations, M {:([CH_(3)COCH_(3)],[Br_(2)],[H^(+)],"Initial rate, disap"),(,,,"pearance of " Br_(2)),(0.30,0.05,0.05,5.7xx10^(-5)),(0.30,0.10,0.05,5.7xx10^(-5)),(0.30,0.10,0.10,1.2xx10^(-4)),(0.40,0.05,0.20,3.1xx10^(-4)):} Based on these data, the rate equation is

For the given reaction , A+Brarr Products Following data are given : {:("initial conc."(m//L),"initial conc."(m//L),"initial conc."(mL^(-1)S^(-1))),([A]_0,[B]_0,),(0.1,0.1,0.05),(0.2,0.1,0.1),(0.1,0.2,0.05):} calculate the Rate constant