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Define the term boiling point - NSC Physical Sciences - Question 3 - 2024 - Paper 2

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Define the term boiling point. Which ONE of compounds A, B or C is mainly in the liquid phase at 100 °C? Explain the difference in the boiling points of compounds ... show full transcript

Worked Solution & Example Answer:Define the term boiling point - NSC Physical Sciences - Question 3 - 2024 - Paper 2

Step 1

Define the term boiling point.

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Answer

The boiling point of a substance is the temperature at which its vapor pressure equals the atmospheric pressure. At this temperature, the liquid changes to a gas.

Step 2

Which ONE of compounds A, B or C is mainly in the liquid phase at 100 °C?

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Answer

Compound C, CH₃CH₂CH₂CH₂OH, is mainly in the liquid phase at 100 °C because its boiling point is 118 °C, which is above 100 °C.

Step 3

Explain the difference in the boiling points of compounds A and B.

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Answer

The boiling point of compound A (CH₃CH₂CH₂CHCl₂) is 78 °C, while the boiling point of compound B (CH₃(CH₂)₂CH₂Cl) is 46 °C. The higher boiling point of compound A is due to stronger intermolecular forces; specifically, it has greater dipole-dipole interactions compared to compound B, which has weaker London dispersion forces.

Step 4

Which ONE of these values represents X, the boiling point of compound D?

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Answer

The value that represents X, the boiling point of compound D (CH₃CH₂CH₂CHO), is 75 °C.

Step 5

Fully explain the answer to QUESTION 3.4.1.

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Answer

The boiling point of compound D will be less than that of compound C (118 °C) and more than that of A (78 °C). Since compound D's boiling point is 75 °C, it reflects the weaker intermolecular forces compared to A and the relatively stronger forces compared to B.

Step 6

How will the boiling points of these organic compounds be affected? Choose from INCREASE, DECREASE or REMAIN THE SAME.

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Answer

The boiling point of these organic compounds will DECREASE when the atmospheric pressure is reduced to 83 kPa.

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