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To make a saturated solution, 36 g of so...

To make a saturated solution, 36 g of sodium chloride is dissolved in 100 g of water at 293 K. Find its concentration at this temperature.

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To find the concentration of a saturated solution of sodium chloride (NaCl) dissolved in water, we can follow these steps: ### Step 1: Identify the mass of solute and solvent - The mass of sodium chloride (solute) = 36 g - The mass of water (solvent) = 100 g ### Step 2: Calculate the mass of the solution The mass of the solution is the sum of the mass of the solute and the mass of the solvent. \[ \text{Mass of solution} = \text{Mass of solute} + \text{Mass of solvent} = 36 \, \text{g} + 100 \, \text{g} = 136 \, \text{g} \] ### Step 3: Calculate the concentration Concentration (in percentage) is calculated using the formula: \[ \text{Concentration} = \left( \frac{\text{Mass of solute}}{\text{Mass of solution}} \right) \times 100 \] Substituting the values: \[ \text{Concentration} = \left( \frac{36 \, \text{g}}{136 \, \text{g}} \right) \times 100 \] ### Step 4: Perform the calculation Calculating the fraction: \[ \frac{36}{136} \approx 0.2647 \] Now, multiplying by 100 to get the percentage: \[ \text{Concentration} \approx 0.2647 \times 100 \approx 26.47\% \] ### Final Answer The concentration of the saturated solution at 293 K is approximately **26.47%**. ---

To find the concentration of a saturated solution of sodium chloride (NaCl) dissolved in water, we can follow these steps: ### Step 1: Identify the mass of solute and solvent - The mass of sodium chloride (solute) = 36 g - The mass of water (solvent) = 100 g ### Step 2: Calculate the mass of the solution The mass of the solution is the sum of the mass of the solute and the mass of the solvent. ...
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