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Standard solutions of sodium hydroxide, NaOH, must be kept in airtight containers - VCE - SSCE Chemistry - Question 9 - 2016 - Paper 1

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Standard solutions of sodium hydroxide, NaOH, must be kept in airtight containers. This is because NaOH is a strong base and absorbs acidic oxides, such as carbon di... show full transcript

Worked Solution & Example Answer:Standard solutions of sodium hydroxide, NaOH, must be kept in airtight containers - VCE - SSCE Chemistry - Question 9 - 2016 - Paper 1

Step 1

Write a balanced overall equation for the reaction between CO2 gas and water to form H2CO3.

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Answer

The balanced overall equation is:

CO2(g)+H2O(l)H2CO3(aq)CO_2(g) + H_2O(l) \rightarrow H_2CO_3(aq)

Step 2

Write a balanced equation for the complete reaction between H2CO3 and NaOH to form Na2CO3.

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Answer

The balanced equation for the reaction is:

2NaOH(aq)+H2CO3(aq)Na2CO3(aq)+2H2O(l)2NaOH(aq) + H_2CO_3(aq) \rightarrow Na_2CO_3(aq) + 2H_2O(l)

Step 3

Calculate the amount of CO2 in mol that entered the container.

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Answer

To calculate the amount of CO2 that enters the container, we can use the ideal gas law and the concentration of CO2 in the air:

  1. Calculate the volume of air entering:

    Vair=10.00L9.90L=0.10LV_{air} = 10.00 L - 9.90 L = 0.10 L

  2. Using the concentration of CO2 in the air, calculate the amount of CO2 in moles:

    n(CO2)=0.0400%×Vairn(CO_2) = 0.0400 \% \times V_{air}

    =0.00040×0.10L= 0.00040 \times 0.10\,L

    =1.64×104mol= 1.64 \times 10^{-4}\, mol

Thus, the amount of CO2 that entered the container is approximately 1.64×104mol1.64 \times 10^{-4}\, mol.

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