Photo AI

This question is about olive oil - AQA - A-Level Chemistry - Question 9 - 2022 - Paper 2

Question icon

Question 9

This-question-is-about-olive-oil-AQA-A-Level Chemistry-Question 9-2022-Paper 2.png

This question is about olive oil. A sample of olive oil is mainly the unsaturated fat Y mixed with a small amount of inert impurity. The structure of Y in the oliv... show full transcript

Worked Solution & Example Answer:This question is about olive oil - AQA - A-Level Chemistry - Question 9 - 2022 - Paper 2

Step 1

Justify why a much smaller target titre would not be acceptable.

96%

114 rated

Answer

A smaller target titre would increase the uncertainty in the titration results. This is because smaller volumes result in a larger percentage error, leading to less reliable measurements. Larger titration volumes provide a more accurate and precise determination of the endpoint.

Step 2

Calculate the amount, in moles, of bromine in the target titre.

99%

104 rated

Answer

Using the volume and concentration of Br₂:

The formula to calculate moles is: extmoles=extconcentrationimesextvolume ext{moles} = ext{concentration} imes ext{volume}

Here, the concentration is 0.025 mol/dm³ and the volume is 0.030 dm³ (30.0 cm³): extmoles=0.025imes0.030=7.5imes104extmol ext{moles} = 0.025 imes 0.030 = 7.5 imes 10^{-4} ext{ mol}

Step 3

Calculate a suitable mass of olive oil to transfer to the volumetric flask using your answer to Question 09.1 and the structure of Y.

96%

101 rated

Answer

To find the mass of olive oil, first calculate the moles of Y:

From Question 09.1, we have 7.5 × 10⁻⁴ mol of Br₂, which reacts with Y:

yield Y = 7.5 × 10^{-4} ext{ mol}

Molar mass of Y = 880 g/mol:

Mass of Y = moles × molar mass: extMassofY=7.5imes104extmolimes880extg/mol=0.66extg ext{Mass of Y} = 7.5 imes 10^{-4} ext{ mol} imes 880 ext{ g/mol} = 0.66 ext{ g}

Since the olive oil contains 85% Y by mass:

Let the total mass of olive oil be m: 0.85m=0.66extg0.85m = 0.66 ext{ g}

Thus, m = \frac{0.66 ext{ g}}{0.85} = 0.776 ext{ g} ext{ (approximately)}

Step 4

Suggest an extra step to ensure that the mass of olive oil in the solution is recorded accurately.

98%

120 rated

Answer

Extra step: Rinse the bottle with solvent after transfer and record the mass.

Justification: This ensures that all the olive oil is transferred to the volumetric flask without leaving residues, which would affect the accuracy of the measured mass.

Step 5

State the reason for inverting the flask several times.

97%

117 rated

Answer

To ensure that the solution is homogeneous. This is important for uniform distribution of the olive oil within the solvent, which guarantees consistency in the solution for accurate titration.

Step 6

Deduce the molecular formula of this compound.

97%

121 rated

Answer

From the mass spectrum, the ion with m/z = 345 corresponds to the compound. The empirical formula is given as CxHyOz.

To determine the molar mass: Molar mass of C = 12 g/mol, H = 1 g/mol, O = 16 g/mol.

Assuming x = 6, y = 12, z = 1 yields: 6imes12+12imes1+1imes16=72+12+16=100extg/mol6 imes 12 + 12 imes 1 + 1 imes 16 = 72 + 12 + 16 = 100 ext{ g/mol} This shows the empirical formula must have a higher ratio to match 345 g/mol, leading to an increased formula of C18H36O, thus deducing the molecular formula as C18H36O.

Join the A-Level students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;