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This question is about silicon and compounds of silicon - AQA - GCSE Chemistry - Question 7 - 2022 - Paper 1

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This question is about silicon and compounds of silicon. The reactivity series sometimes includes non-metals such as carbon, hydrogen and silicon. Silicon can be e... show full transcript

Worked Solution & Example Answer:This question is about silicon and compounds of silicon - AQA - GCSE Chemistry - Question 7 - 2022 - Paper 1

Step 1

Explain what this reaction shows about the position of silicon in the reactivity series.

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Answer

The reaction indicates that silicon is less reactive than carbon. This is because carbon can displace silicon from silicon dioxide, which shows that in the reactivity series, silicon is positioned below carbon.

Step 2

Explain why aluminium is more expensive than carbon.

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Answer

Aluminium is more expensive than carbon primarily because more energy is required to extract aluminium from its ore, requiring electrolysis, while carbon can be obtained more cheaply from sources like coal.

Step 3

Give one reason why the products are difficult to separate if magnesium is used to reduce silicon dioxide.

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Answer

Both products of the reaction are solid, making it challenging to separate them due to the lack of a clear phase difference that would assist in the separation process.

Step 4

Calculate the minimum mass in grams of magnesium needed to completely reduce 1.2 kg of silicon dioxide.

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Answer

First, calculate the number of moles of SiO2 using its molar mass:

M(MgO)=28+2×16=60g/molM(MgO) = 28 + 2 \times 16 = 60 \, \text{g/mol}

For 1.2 kg of SiO2:

1.2kg=1200g1.2 \, \text{kg} = 1200 \, \text{g}

1200g60g/mol=20moles of SiO2\frac{1200 \, \text{g}}{60 \, \text{g/mol}} = 20 \, \text{moles of SiO2}

Since two moles of Mg are required for each mole of SiO2:

20moles SiO2×2moles Mg=40moles Mg20 \, \text{moles SiO2} \times 2 \, \text{moles Mg} = 40 \, \text{moles Mg}

The mass of Mg needed is:

Mass=40moles×24g/mol=960g\text{Mass} = 40 \, \text{moles} \times 24 \, \text{g/mol} = 960 \, \text{g}

Step 5

Complete Figure 9 to show the outer shell electrons in a molecule of Si2H6.

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Answer

In Figure 9, each silicon atom (Si) is at the center connected to three hydrogen atoms (H) with the appropriate number of outer shell electrons drawn around each atom to indicate bonding pairs and lone pairs.

Step 6

Calculate the total volume of gases present after the reaction.

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Answer

To calculate the volume of oxygen consumed by Si2H6:

For 30 cm³ of Si2H6:

30cm³30×105=105cm³\frac{30 \, \text{cm³}}{30} \times 105 = 105 \, \text{cm³}

The volume of excess oxygen:

150105=45cm³150 - 105 = 45 \, \text{cm³}

The volume of water vapor formed:

3×30=90cm³3 \times 30 = 90 \, \text{cm³}

Total volume of gases:

45+90=135cm³45 + 90 = 135 \, \text{cm³}

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