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7.1.A—Explain the relationship between the occurrence of a reversible chemical or physical process, and the…

Syllabus
2024
Objective
7.1
Level

7.1.A—Explain the relationship between the occurrence of a reversible chemical or physical process, and the…

Explain the relationship between the occurrence of a reversible chemical or physical process, and the establishment of equilibrium, to experimental observations.

  • Many observable processes are reversible. Examples include evaporation and condensation of water, absorption and desorption of a gas, or dissolution and precipitation of a salt. Some important reversible chemical processes include the transfer of protons in acid-base reactions and the transfer of electrons in redox reactions.
  • When equilibrium is reached, no observable changes occur in the system. Reactants and products are simultaneously present, and the concentrations or partial pressures of all species remain constant.
  • The equilibrium state is dynamic. The forward and reverse processes continue to occur at equal rates, resulting in no net observable change.
  • Graphs of concentration, partial pressure, or rate of reaction versus time for simple chemical reactions can be used to understand the establishment of chemical equilibrium.
ConceptAP Chemistry