5070/32

Chemistry 5070/32May/June 2010

Cambridge O-Level · Practical Test · worked solutions for every part, with the mark scheme

2
questions
40
marks
90
minutes

Topics Observations and Measurements · Analysis, Conclusions and Evaluation · Experimental Contexts · Use of Techniques, Apparatus and Materials · Qualitative Analysis

Q118MExperimental ContextsObservations and MeasurementsUse of Techniques, Apparatus and MaterialsAnalysis, Conclusions and EvaluationFree sample

An organic acid has the molecular formula C3H4O5\text{C}_3\text{H}_4\text{O}_5.

You are required to find by experiment the number of moles of sodium hydroxide that react with 1 mole of this organic acid.

P is 0.300 mol/dm30.300\text{ mol/dm}^3 sodium hydroxide.
Q is an aqueous solution of the organic acid, C3H4O5\text{C}_3\text{H}_4\text{O}_5, containing 18.0 g/dm318.0\text{ g/dm}^3.

(a)

Put Q into the burette.

Pipette a 25.0 cm325.0\text{ cm}^3 (or 20.0 cm320.0\text{ cm}^3) portion of P into a flask and titrate with Q, using the indicator provided.

Record your results in the table, repeating the titration as many times as you consider necessary to achieve consistent results.

Results

Burette readings

titration number12
final reading / cm3\text{cm}^3
initial reading / cm3\text{cm}^3
volume of Q used / cm3\text{cm}^3
best titration results (✓)

Summary

Tick (✓) the best titration results.

Using these results, the average volume of Q required was ______ cm3\text{cm}^3.

Volume of P used was ______ cm3\text{cm}^3.

12M
(b)

P is 0.300 mol/dm30.300\text{ mol/dm}^3 sodium hydroxide.

Calculate the number of moles of sodium hydroxide in the volume of P used.

moles of sodium hydroxide in the volume of P used = ______

1M
(c)

Q is an aqueous solution of C3H4O5\text{C}_3\text{H}_4\text{O}_5 containing 18.0 g/dm318.0\text{ g/dm}^3.

Calculate the concentration, in mol/dm3\text{mol/dm}^3, of C3H4O5\text{C}_3\text{H}_4\text{O}_5 in Q.
[MrM_r: C3H4O5\text{C}_3\text{H}_4\text{O}_5, 120]

concentration of C3H4O5\text{C}_3\text{H}_4\text{O}_5 in Q = ______ mol/dm3\text{mol/dm}^3

1M
(d)

Calculate the number of moles of C3H4O5\text{C}_3\text{H}_4\text{O}_5 in the average volume of Q used in the titration.

moles of C3H4O5\text{C}_3\text{H}_4\text{O}_5 = ______

1M
(e)

Using your answers from (b) and (d) calculate the number of moles of sodium hydroxide which react with 1 mole of C3H4O5\text{C}_3\text{H}_4\text{O}_5.

moles of sodium hydroxide = ______

1M
(f)

Using your answer to (e) write an equation for the reaction of the organic acid, C3H4O5\text{C}_3\text{H}_4\text{O}_5, with sodium hydroxide.

______

2M

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