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Vinegar is a solution of ethanoic acid (acetic acid) - Leaving Cert Chemistry - Question 1 - 2002

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Vinegar is a solution of ethanoic acid (acetic acid). Some bottles of vinegar are labelled "White Wine Vinegar". (a) What compound in wine is converted to ethanoic ... show full transcript

Worked Solution & Example Answer:Vinegar is a solution of ethanoic acid (acetic acid) - Leaving Cert Chemistry - Question 1 - 2002

Step 1

What compound in wine is converted to ethanoic acid in vinegar? What type of chemical process converts this compound to ethanoic acid?

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Answer

The compound in wine that is converted to ethanoic acid in vinegar is ethanol (also known as ethyl alcohol or C₂H₅OH). The type of chemical process that converts ethanol to ethanoic acid is known as oxidation. In this process, ethanol is oxidized by oxygen, resulting in the formation of ethanoic acid.

Step 2

Describe the procedure for measuring the 50 cm³ sample of vinegar and diluting it to 500 cm³.

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Answer

To measure a 50 cm³ sample of vinegar, follow these steps:

  1. Use a pipette or a burette to draw up 50 cm³ of vinegar from the bottle.
  2. Transfer the 50 cm³ of vinegar into a clean volumetric flask.
  3. Add deionized water to the flask gradually until the total volume reaches the 500 cm³ mark. Ensure that all of the vinegar is transferred and mixed well with the water for a homogeneous solution.

Step 3

Name the piece of equipment that should be used to measure the ethanoic acid solution during the titration. State the procedure for washing this piece of equipment in preparation for the titration. Name a suitable indicator for this titration.

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Answer

The piece of equipment that should be used to measure the ethanoic acid solution during the titration is a burette.

To prepare the burette for the titration, wash it with deionized water first to remove any impurities. Then, rinse the burette with the ethanoic acid solution to ensure that the solution does not get contaminated. This involves filling the burette with the solution and allowing it to drain out before filling it again to the desired mark.

A suitable indicator for this titration is phenolphthalein, which changes color when the solution transitions from acidic to neutral.

Step 4

Calculate the concentration of ethanoic acid in the diluted vinegar solution in moles per liter and hence express this concentration in terms of % (w/w).

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Answer

To calculate the concentration of ethanoic acid in moles per liter, we need to use the titration data. Given:

  • The mean titration volume of NaOH used is 20.5 cm³ = 0.0205 L
  • The concentration of NaOH is 0.12 M

Using the reaction stoichiometry:

  1. Calculate the moles of NaOH used:

    extMolesofNaOH=extConcentrationimesextVolume=0.12imes0.0205=0.00246extmoles ext{Moles of NaOH} = ext{Concentration} imes ext{Volume} = 0.12 imes 0.0205 = 0.00246 ext{ moles}

  2. Since the reaction ratio of ethanolic acid to NaOH is 1:1, the moles of ethanoic acid present in 20.5 cm³ of the solution are also 0.00246 moles.

  3. To find the concentration in the diluted solution:

    ext{Concentration in mol/L} = rac{ ext{Moles}}{ ext{Volume}} = rac{0.00246 ext{ moles}}{0.025 ext{ L}} = 0.0984 ext{ mol/L}

  4. To convert to % (w/w), knowing that the molar mass of ethanoic acid (C₂H₄O₂) is approximately 60 g/mol:

    extMassofethanoicacid=0.0984extmol/Limes60extg/mol=5.904extg ext{Mass of ethanoic acid} = 0.0984 ext{ mol/L} imes 60 ext{ g/mol} = 5.904 ext{ g}

  5. To express this in terms of % (w/w), considering 500 g of solution:

    ext{Percentage} = rac{5.904 ext{ g}}{500 ext{ g}} imes 100 = 1.18 ext{ % (w/w)}

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