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Initial Rate Method

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Intitial rate method: Use the following initial rate data determine the form of the rate law expressoin for the reaction 3X+2Yrarr2U+V Strategy: The rate law is of the form Rate = k[X]^(a)[Y]^(b) No two experiments have the same in initial [Y], thus, use the alternative method discussed earlier to evalaute a and b.

In order to experimentally determine order, initial rate method can be used Once order is determined integrated rate law can be obtained by using concentration of reactants Based on this information and data given below, {:(,"[A] Molarity",,"[B] Molarity",,Rate of Reaction[Msec^(-1)]),("1",10^(-2)M,,3xx10^(-3)M,,2xx10^(-2)),("2",2xx10^(-2)M,,3xx10^(-3)M,,4xx10^(-2)),("3",2xx10^(-2),,6xx10^(-3)M,,8xx10^(-2)):} Answer the question which follow Reaction: A(g)+B(g) rarr C(g) What will be the time taken for half of the 'A' initially taken to consume if at the same temperature reaction is started taking [A] and [B] to be at 2 M concentration?

In order to experimentally determine order, initial rate method can be used Once order is determined integrated rate law can be obtained by using concentration of reactants Based on this information and data given below, {:(,"[A] Molarity",,"[B] Molarity",,Rate of Reaction[Msec^(-1)]),("1",10^(-2)M,,3xx10^(-3)M,,2xx10^(-2)),("2",2xx10^(-2)M,,3xx10^(-3)M,,4xx10^(-2)),("3",2xx10^(-2),,6xx10^(-3)M,,8xx10^(-2)):} Answer the question which follow Reaction: A(g)+B(g) rarr C(g) What will be the value of rate constant for the above reaction?

Consider the reaction, A + B to C + D . The initial rate for different initial concentrations of the reactants are given below : Calculate the rate constant.

Methods to determine order of Reaction | Hit & Trial Method | Rate Method | Half life Method

Consider the reaction, A + B to C + D . The initial rate for different initial concentrations of the reactants are given below : Write the rate law equation.