r=[A]m[B]n APPLEX
The rate law expression for a first-order reaction is: Rate kA, where Rate is the reaction rate, k is the rate constant, and A is the concentration of the reactant.
Rate = k[A]m[B]n
The mechanism that is consistent with the observed rate law is the one that matches the experimental data and mathematical expression for the rate of the reaction.
r=[A]m[B]n APPLEX
The rate of a reaction is calculated using the concentrations of reactants.
In chemical kinetics, reaction rate refers to how fast a reaction occurs, rate law is the mathematical expression that relates the reaction rate to the concentrations of reactants, and rate constant is a constant value that represents the speed of the reaction at a specific temperature.
The rate of a reaction can be determined using the rate law expression, which involves the rate constant (k) and the concentrations of reactants (A and B). Without knowing the specific form of the rate law, we cannot calculate the rate based solely on the values of the concentrations A and B. Additional information about the rate law or the order of the reaction with respect to A and B would be needed.
The order of a reaction with respect to ClO2 is determined by the exponent of ClO2 in the rate law expression. If the rate law is of the form rate = k[ClO2]^n, then the order with respect to ClO2 is n. This value can be determined experimentally by measuring how changes in the concentration of ClO2 affect the reaction rate. If the concentration of ClO2 does not appear in the rate law, then the order with respect to ClO2 is zero.
The question contains an expression, not an equation. An expression cannot have a unit rate.
An expression relating the rate of a reaction to the rate constant and the concentrations of the reactants
An expression relating the rate of a reaction to the rate constant and the concentrations of the reactants
That are three factors that are included in the expression of the combined gas law Volume,Temperature, Pressure,