8.1 When a piece of sodium metal (Na) is added to water in a test tube, hydrogen gas is released - NSC Physical Sciences - Question 8 - 2021 - Paper 2
Question 8
8.1 When a piece of sodium metal (Na) is added to water in a test tube, hydrogen gas is released. When phenolphthalein indicator is added to the test tube, the solut... show full transcript
Worked Solution & Example Answer:8.1 When a piece of sodium metal (Na) is added to water in a test tube, hydrogen gas is released - NSC Physical Sciences - Question 8 - 2021 - Paper 2
Step 1
8.1.1 Define the term reduction in terms of electron transfer.
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Answer
Reduction is defined as the gain of electrons during a chemical reaction. This process leads to a decrease in the oxidation state of the substance undergoing reduction.
Step 2
8.1.2 Write down the reduction half-reaction.
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Answer
The reduction half-reaction for the reaction of sodium with water is:
2H2O+2e−→H2(g)+2OH−(aq)
Step 3
8.1.3 Write down the balanced equation for the reaction that takes place.
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The balanced overall equation for the reaction of sodium with water is:
2Na(s)+2H2O(l)→2Na+(aq)+H2(g)+2OH−(aq)
Step 4
8.1.4 Give a reason why the solution turns pink.
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The solution turns pink due to the formation of hydroxide ions (OH^-) when sodium reacts with water, which increases the pH and indicates a basic solution. The phenolphthalein turns pink in alkaline conditions.
Step 5
8.1.5 Refer to the relative strengths of the REDUCING AGENTS to explain why no reaction is observed.
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Copper does not react with water because it is a weaker reducing agent compared to hydrogen. In this context, the reducing agents (H₂ and OH⁻) are stronger than copper in water, therefore, there is no reduction of water observed.
Step 6
8.2.1 What does the single line (|) in the cell notation above represent?
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Answer
The single line (|) in the cell notation represents a phase boundary between two different states of matter. In this case, it separates the solid lead (Pb) from the aqueous lead ions (Pb²⁺).
Step 7
8.2.2 State the energy conversion that takes place in this cell.
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In this electrochemical cell, chemical energy is converted into electrical energy due to the redox reactions occurring at the electrodes.
Step 8
8.2.3 Calculate the initial emf of the cell under standard conditions.
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To calculate the initial electromotive force (emf) of the cell, we use the standard reduction potentials: