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a) (i) Balance the equation for the reaction between sodium and chlorine to produce sodium chloride by putting numbers in the spaces provided - Edexcel - GCSE Chemistry - Question 4 - 2014 - Paper 1

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a) (i) Balance the equation for the reaction between sodium and chlorine to produce sodium chloride by putting numbers in the spaces provided. Na + Cl → NaCl (i... show full transcript

Worked Solution & Example Answer:a) (i) Balance the equation for the reaction between sodium and chlorine to produce sodium chloride by putting numbers in the spaces provided - Edexcel - GCSE Chemistry - Question 4 - 2014 - Paper 1

Step 1

Balance the equation for the reaction between sodium and chlorine to produce sodium chloride

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Answer

The balanced equation is:

ightarrow 2 ext{NaCl}$$

Step 2

Calculate the percentage yield of sodium chloride in this experiment

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Answer

To calculate the percentage yield:

Percentage Yield=(Actual YieldTheoretical Yield)×100\text{Percentage Yield} = \left( \frac{\text{Actual Yield}}{\text{Theoretical Yield}} \right) \times 100

Substituting in the values:

Percentage Yield=(2.54.0)×100=62.5%\text{Percentage Yield} = \left( \frac{2.5}{4.0} \right) \times 100 = 62.5\%

Step 3

Complete the sentence by putting a cross (✗) in the box next to your answer

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Answer

The properties described indicate that sodium chloride is:

A ionic

Step 4

Calculate the relative formula mass of sodium chloride, NaCl

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Answer

The relative formula mass of sodium chloride is calculated as follows:

Relative Formula Mass=Na+Cl=23+35.5=58.5\text{Relative Formula Mass} = \text{Na} + \text{Cl} = 23 + 35.5 = 58.5

Step 5

Calculate the percentage by mass of magnesium in magnesium sulfate, MgSO₄

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Answer

To calculate the percentage by mass of magnesium:

Percentage of Mg=(Mass of MgRelative Formula Mass of MgSO4)×100\text{Percentage of Mg} = \left( \frac{\text{Mass of Mg}}{\text{Relative Formula Mass of MgSO}_4} \right) \times 100

Substituting the values:

Percentage of Mg=(24120)×100=20%\text{Percentage of Mg} = \left( \frac{24}{120} \right) \times 100 = 20\%

Step 6

Give the empirical formula of ethane

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Answer

The empirical formula of ethane (C₂H₆) is:

CH₃

Step 7

Explain why ethane has a low boiling point

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Answer

Ethane has a low boiling point due to the weak intermolecular forces present between ethane molecules. These include:

  • Van der Waals forces, which are relatively weak compared to covalent bonds.
  • Little energy is required to break these forces, resulting in a low boiling point.

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