Q.The density of water is . The density of water vapour at and pressure is . The volume of a molecule multiplied by the total number gives, what is called, molecular volume. Estimate the ratio (or fraction) of the molecular volume to the total volume occupied by the water vapour under the above conditions of temperature and pressure.
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Start your 14-day free trial to unlock the full solution →The molecular volume fraction is the ratio of the actual space occupied by molecules to the total volume they're spread across. By comparing liquid and vapour densities, we find that molecules occupy roughly of the vapour volume.
Why this approach works
When water evaporates, the same molecules that were tightly packed in liquid form spread out into a much larger volume as vapour. The molecular volume — the actual physical space the molecules themselves occupy — doesn't change; what changes is how much empty space surrounds them.
In the liquid phase, molecules are essentially touching, so the molecular volume is nearly equal to the total volume. In the vapour phase, molecules are far apart, so the molecular volume is a tiny fraction of the total volume. The key insight: the ratio of densities tells us how much the same mass has expanded, which directly gives us the molecular volume fraction.
Step-by-step reasoning
1. Understand what stays constant
Consider a fixed mass of water. Whether it's liquid or vapour, the number of molecules is the same, and each molecule has the same intrinsic volume . Therefore, the molecular volume is identical in both phases.
2. Relate molecular volume to liquid water
In liquid water at , molecules are closely packed with negligible gaps. The volume occupied by mass is:
Since molecules are touching, , so:
3. Find the total volume of vapour
The same mass as water vapour at occupies:
4. Calculate the molecular volume fraction
The fraction we seek is: …
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