Can Rate Law Be Determined From Reaction Stoichiometry?

Can Rate Law Be Determined From Reaction Stoichiometry? Rate laws are determined experimentally and cannot be predicted by reaction stoichiometry. The order of reaction describes how much a change in the amount of each substance affects the overall rate, and the overall order of a reaction is the sum of the orders for each substance

Which Equation Shows The Integrated Rate Law For A Substance That Reacts According To Second-order Kinetics?

Which Equation Shows The Integrated Rate Law For A Substance That Reacts According To Second-order Kinetics? The integrated rate law for the second-order reaction A → products is 1/[A]_t = kt + 1/[A]_0. Because this equation has the form y = mx + b, a plot of the inverse of [A] as a function of

Which Equation Represents The Integrated Rate Law For A Zero Order Reaction?

Which Equation Represents The Integrated Rate Law For A Zero Order Reaction? The integrated rate law for the zero-order reaction A → products is [A]_t = -kt + [A]_0. Because this equation has the form y = mx + b, a plot of the concentration of A as a function of time yields a straight