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 A binary liquid solution is prepared by mixing n-heptane and ethanol. Which one of the following statements is correct regarding the behaviour of the solution ?
 [AIEEE 2009]
  • a)
    The solution is non-ideal, showing +ve deviation form Raoult's Law
  • b)
    The solution is non-ideal, showing –ve deviation from Raoult's Law
  • c)
     N-heptane shows +ve deviation while ethanol shows  -ve deviation from Raoult's Law
  • d)
    The solution formed is an ideal solution
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
A binary liquid solution is prepared by mixing n-heptane and ethanol. ...
The correct answer is Option A.
n-Heptane is non-polar and ethanol is polar. Hence the mixture formed by these two liquids is non-ideal. The stronger forces of attraction between n-heptane-n-heptane and ethanol-ethanol are replaced by weaker forces of attraction between n-heptane-ethanol in the solution. Therefore the escaping tendency of the liquid molecules into the vapour phase increases. This will increase the vapour pressure more than expected from Raoult's law. This is a positive deviation. 
Hence, the correct option is B
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Most Upvoted Answer
A binary liquid solution is prepared by mixing n-heptane and ethanol. ...
The correct answer is Option A.
n-Heptane is non-polar and ethanol is polar. Hence the mixture formed by these two liquids is non-ideal. The stronger forces of attraction between n-heptane-n-heptane and ethanol-ethanol are replaced by weaker forces of attraction between n-heptane-ethanol in the solution. Therefore the escaping tendency of the liquid molecules into the vapour phase increases. This will increase the vapour pressure more than expected from Raoult's law. This is a positive deviation. 
Hence, the correct option is B
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Community Answer
A binary liquid solution is prepared by mixing n-heptane and ethanol. ...
The correct answer is Option A.
n-Heptane is non-polar and ethanol is polar. Hence the mixture formed by these two liquids is non-ideal. The stronger forces of attraction between n-heptane-n-heptane and ethanol-ethanol are replaced by weaker forces of attraction between n-heptane-ethanol in the solution. Therefore the escaping tendency of the liquid molecules into the vapour phase increases. This will increase the vapour pressure more than expected from Raoult's law. This is a positive deviation. 
Hence, the correct option is B
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A binary liquid solution is prepared by mixing n-heptane and ethanol. Which one of the following statements is correct regarding the behaviour of the solution ?[AIEEE 2009]a)The solution is non-ideal, showing +ve deviation form Raoult's Lawb)The solution is non-ideal, showing –ve deviation from Raoult's Lawc)N-heptane shows +ve deviation while ethanol shows -ve deviation from Raoult's Lawd)The solution formed is an ideal solutionCorrect answer is option 'A'. Can you explain this answer? for Class 12 2025 is part of Class 12 preparation. The Question and answers have been prepared according to the Class 12 exam syllabus. Information about A binary liquid solution is prepared by mixing n-heptane and ethanol. Which one of the following statements is correct regarding the behaviour of the solution ?[AIEEE 2009]a)The solution is non-ideal, showing +ve deviation form Raoult's Lawb)The solution is non-ideal, showing –ve deviation from Raoult's Lawc)N-heptane shows +ve deviation while ethanol shows -ve deviation from Raoult's Lawd)The solution formed is an ideal solutionCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for Class 12 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A binary liquid solution is prepared by mixing n-heptane and ethanol. Which one of the following statements is correct regarding the behaviour of the solution ?[AIEEE 2009]a)The solution is non-ideal, showing +ve deviation form Raoult's Lawb)The solution is non-ideal, showing –ve deviation from Raoult's Lawc)N-heptane shows +ve deviation while ethanol shows -ve deviation from Raoult's Lawd)The solution formed is an ideal solutionCorrect answer is option 'A'. Can you explain this answer?.
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