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A solution of sodium carbonate was prepared by dissolving a known mass of anhydrous sodium carbonate (Na2CO3) in deionised water in a beaker and transferring it to a... show full transcript
Step 1
Step 2
Answer
One precaution that can be taken is to rinse the beaker with deionised water and add the washings to the volumetric flask (F). This ensures that any sodium carbonate residue sticking to the sides of the beaker is transferred into the flask.
Step 3
Answer
In the sketch of flask F, label the bottom of the curved meniscus touching line L, which indicates the exact fill level of 500 cm³. The meniscus should be curved, with a clear point at which it meets the line.
Step 4
Answer
Flask F must be inverted several times to ensure thorough mixing of the sodium carbonate solution. This creates a homogeneous solution, preventing concentration gradients where parts of the solution might be more concentrated than others.
Step 5
Answer
To find the mass of Na2CO3 needed, use the molarity formula:
Calculate the number of moles required:
Calculate the molar mass of Na2CO3:
Find the mass of Na2CO3:
Step 6
Step 7
Step 8
Step 9
Answer
To find the concentration of the hydrochloric acid:
Use the titration equation and the volumes:
According to the reaction: The mole ratio of HCl to Na2CO3 is 2:1, so:
Calculate the concentration (C) using: C = rac{ ext{Moles}}{ ext{Volume in litres}} Here, volume of HCl = rac{22.7 ext{ cm}^3}{1000} = 0.0227 ext{ L}; C = rac{0.0025}{0.0227} ext{ mol/L} = 0.1105 ext{ mol/L}. Therefore, the concentration of the hydrochloric acid solution is approximately 0.11 mol/L.
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