Chemistry · Ch 7 — Equilibrium
Summary
Summary
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Dynamic equilibrium: In a closed system, the forward and reverse reaction rates become equal — the system appears static but is microscopically active. For a general reaction , the equilibrium constant (concentrations in mol/L). uses partial pressures: , where .
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tells the story: → products favoured; → reactants favoured. changes only with temperature — never with concentration, pressure, or catalyst. For the reverse reaction, ; if you multiply the equation by , .
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Reaction quotient : Same expression as but for any instant. Compare with : → forward direction; → reverse direction; → equilibrium.
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Le Chatelier’s principle: If a system at equilibrium is disturbed, it shifts to partially counteract the change.
- Concentration: Adding a reactant shifts right; removing a product shifts right.
- Pressure/volume: For gases, increasing pressure (decreasing volume) favours the side with fewer moles of gas. No effect if .
- Temperature: Exothermic reactions () shift left on heating; endothermic () shift right on heating. Catalyst does not shift equilibrium — it only helps reach it faster.
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Ionic equilibrium in water: Water autoionises: , at 25°C. Pure water: M. , , .
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Acid–base strength: (acid dissociation constant) and (base dissociation constant). Strong acids/bases have or ; weak ones have small . For a conjugate pair: . , .
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pH of weak acids/bases: Use the approximation (valid when ). Similarly, for weak bases. For a salt of weak acid + strong base, ; for weak base + strong acid, . …