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4 (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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4 (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 → ... show full transcript

Worked Solution & Example Answer:4 (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

To balance the equation:

ightarrow 2 ext{NaCl}$$

Step 2

Calculate the percentage yield of sodium chloride in this experiment.

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Answer

The formula for percentage yield is:

ext{Percentage Yield} = rac{ ext{Actual Yield}}{ ext{Theoretical Yield}} imes 100

Inserting the values:

ext{Percentage Yield} = rac{2.5 ext{ g}}{4.0 ext{ g}} imes 100 = 62.5\%

Step 3

Complete the sentence: These properties show that the structure of sodium chloride is.

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Answer

The correct answer is:

A ionic

Step 4

Calculate the relative formula mass of sodium chloride, NaCl.

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Answer

To calculate the relative formula mass of NaCl:

extRelativeFormulaMass=extNa+extCl=23+35.5=58.5 ext{Relative Formula Mass} = ext{Na} + ext{Cl} = 23 + 35.5 = 58.5

Step 5

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

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Answer

First, determine the mass of magnesium in MgSO₄:

  • Magnesium (Mg) = 24
  • Formula mass of MgSO₄ = 120

Percentage by mass of magnesium is calculated as:

ext{Percentage of Magnesium} = rac{24}{120} imes 100 = 20\%

Step 6

Give the empirical formula of ethane.

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Answer

The empirical formula of ethane, C₂H₆, is:

extEmpiricalFormula=extCH3 ext{Empirical Formula} = ext{CH}_3

Step 7

Explain why ethane has a low boiling point.

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Answer

Ethane has a low boiling point because it is a simple molecular, covalent compound. The forces holding the molecules together are weak van der Waals forces, which require little energy to overcome. Therefore, less heat is needed to separate the molecules.

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