Q.What is meant by positive and negative deviations from Raoult's law and how is the sign of related to positive and negative deviations from Raoult's law?
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Start your 14-day free trial to unlock the full solution →Raoult’s law deviations arise when intermolecular forces in a mixture differ from those in pure components. Positive deviation () occurs when A–B interactions are weaker than A–A and B–B, while negative deviation () occurs when A–B interactions are stronger.
The Core Idea
Raoult’s law states that for an ideal solution, the partial vapour pressure of each component is proportional to its mole fraction: , where is the vapour pressure of pure A. Real solutions often deviate from this because the molecules of A and B interact differently with each other than with themselves.
The sign of (enthalpy change on mixing) is a direct thermodynamic fingerprint of these deviations. It tells you whether the new A–B interactions are energetically favourable or unfavourable compared to the original A–A and B–B interactions.
Step-by-Step Reasoning
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Understand the reference: an ideal solution
In an ideal solution, A–A, B–B, and A–B interactions are all equally strong. Mixing is energetically neutral: . The vapour pressure follows Raoult’s law exactly.
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Positive deviation: weaker A–B interactions
If A–B interactions are weaker than A–A and B–B, the molecules in the mixture “prefer” to stay with their own kind. This makes it easier for molecules to escape into the vapour phase, so the observed vapour pressure is higher than Raoult’s law predicts.
To break the stronger A–A and B–B interactions and form weaker A–B bonds, the system must absorb energy from the surroundings. Hence (endothermic mixing).
Example: Ethanol + acetone — the hydrogen bonding in pure ethanol is disrupted.
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Negative deviation: stronger A–B interactions
If A–B interactions are stronger than A–A and B–B, molecules are held more tightly in the liquid. Fewer escape, so vapour pressure is lower than Raoult’s law predicts.
Forming these stronger bonds releases energy, so (exothermic mixing).
Example: Chloroform + acetone — hydrogen bonding between the two is stronger than in either pure liquid.
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The direct relationship …
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