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Summary IB CHEMISTRY Topic 7 - Equilibrium Notes (HL AND SL)

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Quality notes on IB Chemistry topic 7 - Equilibrium! For both HL and SL students, covers the basic concepts of equilibrium as well as equilibrium law and ICE tables. Sample questions and diagrams included.

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IB CHEMISTRY:
TOPIC 7 EQUILIBRIUM NOTES

7.1 Equilibrium


Dynamic equilibrium
 Chemical equilibrium is a state in which the rate of the forward reaction equals the
rate of the backward reaction
 In other words the forward and reverse reactions will continue to occur, but the
concentration will stay the same
 Such a system is said to be in a state of dynamic equilibrium. Characteristics of
equilibrium include:

Feature of equilibrium state Explanation

1 Equilibrium is dynamic The reaction has stopped but both forward and backward reactions
are still occurring at the same rate

2 Equilibrium is achieved in a closed A closed system prevents exchange of matter with the surroundings,
system so equilibrium is achieved where both reactants and products can
react and recombine.

3 The concentrations of reactants and They are being produced and destroyed at an equal rate.
products remain constant

4 There is no change in macroscopic Color and density do not change as these depend on the
properties concentrations.

5 Equilibrium can be reached from either The reaction can be started with all reactants, all products or a
direction (products or reactants) mixture.

 Example: In a closed container, liquid bromine is in a dynamic equilibrium with its vapor.
There will always be both liquid and gas bromine in the flask. This state is described as a
dynamic equilibrium. Vaporization and condensation are both happening simultaneously
in the flask. Liquid bromine is in dynamic equilibrium with bromine vapour. This can be
presented as:

Br2 (l)⇄ Br2 (g)
 Dynamic equilibrium can only be established in a closed system where reactants and
products cannot escape

Equilibrium Constant: Kc
 An equilibrium reaction can be represented as aA +bB ⇄ cC+ dD
 Lower case letters represent the number of moles (coefficient), the uppercase letters
represent the molecule itself

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