Topic 11
Kinetics
Topic 11 turns rate into an equation. It covers the rate equation, orders and the rate constant, the techniques and methods used to collect rate data, deducing orders from concentration–time and rate–concentration graphs and from initial-rate data, the iodine–propanone reaction, the rate-determining step and reaction mechanisms including the evidence for Sₙ1 and Sₙ2, activation energy from the Arrhenius equation, and solid catalysts. It is examined in Unit 4 and assessed practically through Core Practicals 9a, 9b and 10.
Revision Notes
Equations
Rate Equations, Orders and the Rate Constant
Rate equations: orders of reaction, the rate constant k, overall order and working out the units of k.
Start revisingRates
Techniques for Measuring Rates
Measuring rates: titration, colorimetry, mass and gas-volume methods, continuous monitoring and the initial-rates method with clock reactions.
Start revisingTime Graphs
Concentration–Time Graphs and Half-Life
Concentration–time graphs: deducing order from the shape, tangents and rates, half-life and first-order reactions.
Start revisingMethod
Rate–Concentration Graphs and the Initial-Rates Method
The initial-rates method: rate–concentration graphs, deducing orders from tables of data, writing the rate equation and calculating k.
Start revisingPropanone
The Iodine–Propanone Reaction
The iodine–propanone reaction: collecting rate data, the orders with respect to iodine, propanone and H⁺, and deducing the mechanism.
Start revisingStep
Rate-Determining Step and Reaction Mechanisms
The rate-determining step: rate equations from mechanisms, mechanisms from rate equations, intermediates, and Sₙ1/Sₙ2 evidence from halogenoalkanes hydrolysis.
Start revisingEquation
Activation Energy and the Arrhenius Equation
The Arrhenius equation: temperature and the rate constant, ln k against 1/T graphs and finding the activation energy from the gradient.
Start revisingHeterogeneous and Homogeneous Catalysis
Catalysis: heterogeneous catalysts at surfaces (adsorption, desorption, the Haber process, catalytic converters) and homogeneous catalysts that are regenerated.
Start revisingTopic 11 Kinetics – Edexcel International A Level Chemistry
The following specification points outline the knowledge and skills students are expected to demonstrate for Topic 11. Wording follows the Pearson Edexcel International A Level Chemistry specification.
11.1 – 11.5 Rate equations, orders and rate data
11.6 – 11.9 The iodine–propanone reaction, rate-determining step and mechanisms
11.10 – 11.13 Activation energy, catalysts and core practicals
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