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Worked Examples · Example 1.2

Q.5.74 g5.74\ \text{g} of a substance occupies 1.2 cm31.2\ \text{cm}^3. Express its density by keeping the significant figures in view.

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The density is calculated by dividing mass by volume, and the result must be reported with the least number of significant figures from the given data — here, 2 significant figures — giving 4.8 g/cm3\boxed{4.8\ \text{g/cm}^3}.

The key idea is that when you multiply or divide measurements, the final answer can only be as precise as the least precise measurement. Significant figures are not just about counting digits — they reflect the uncertainty in your measurements. A mass of 5.74 g5.74\ \text{g} has three significant figures (all digits are certain), but a volume of 1.2 cm31.2\ \text{cm}^3 has only two significant figures (the '2' is the last certain digit, and there's no decimal beyond it). So the density, which is mass divided by volume, cannot be reported with more than two significant figures.

Let's work through it step by step.

  1. Write the formula for density. Density ρ\rho is defined as mass per unit volume:

ρ=massvolume=5.74 g1.2 cm3\rho = \frac{\text{mass}}{\text{volume}} = \frac{5.74\ \text{g}}{1.2\ \text{cm}^3}

  1. Perform the division without rounding yet.

5.741.2=4.78333… g/cm3\frac{5.74}{1.2} = 4.78333\ldots\ \text{g/cm}^3

  1. Identify the limiting significant figures.

    • Mass 5.745.74 has 3 significant figures.
    • Volume 1.21.2 has 2 significant figures. The rule for multiplication/division: the result should have the same number of significant figures as the measurement with the fewest significant figures. Here, that's 2.
  2. Round the result to 2 significant figures.

    The unrounded value is 4.78333…4.78333\ldots …

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