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Problems · Problem 1.8

Q.The density of 3 M solution of NaCl is 1.25 g mL−11.25\ g\ mL^{-1}. Calculate the molality of the solution.

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Convert molarity to molality by finding the mass of solvent in 1 L of solution: use density to get total mass, subtract solute mass, then apply the molality definition. The molality is 2.88 mol kg−1\boxed{2.88\ \text{mol kg}^{-1}}.

Why this conversion works

Molarity and molality measure concentration differently. Molarity (MM) counts moles of solute per liter of solution, while molality (mm) counts moles per kilogram of solvent. The density bridges these two worlds: it tells us the total mass of solution, from which we can extract the solvent mass.

The strategy is to pick a convenient sample—1 L of solution works beautifully—find how many moles of NaCl it contains (that's what molarity gives us), calculate the mass of just the water in that liter, then compute molality.

Step-by-step calculation

1. Choose a basis volume

Take exactly 1 L (or 1000 mL) of the 3 M NaCl solution. This contains:

nNaCl=3 moln_{\text{NaCl}} = 3\ \text{mol}

2. Find the total mass of this solution

The density is 1.25 g mL−11.25\ \text{g mL}^{-1}, so:

msolution=1.25×1000=1250 gm_{\text{solution}} = 1.25 \times 1000 = 1250\ \text{g}

3. Calculate the mass of NaCl present

The molar mass of NaCl is MNaCl=23+35.5=58.5 g mol−1M_{\text{NaCl}} = 23 + 35.5 = 58.5\ \text{g mol}^{-1}.

Mass of solute:

mNaCl=3 mol×58.5 g mol−1=175.5 gm_{\text{NaCl}} = 3\ \text{mol} \times 58.5\ \text{g mol}^{-1} = 175.5\ \text{g}

4. Determine the mass of water (solvent)

The solution mass equals solute plus solvent:

mwater=msolution−mNaCl=1250−175.5=1074.5 g=1.0745 kgm_{\text{water}} = m_{\text{solution}} - m_{\text{NaCl}} = 1250 - 175.5 = 1074.5\ \text{g} = 1.0745\ \text{kg}

5. Apply the definition of molality

Molality is moles of solute per kilogram of solvent: …

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