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What type of reaction is taking place in the cell above? What is the reading on the voltmeter? Switch S is now closed - NSC Technical Sciences - Question 6 - 2024 - Paper 2

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Question 6

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What type of reaction is taking place in the cell above? What is the reading on the voltmeter? Switch S is now closed. Calculate the reading on the voltmeter. Wh... show full transcript

Worked Solution & Example Answer:What type of reaction is taking place in the cell above? What is the reading on the voltmeter? Switch S is now closed - NSC Technical Sciences - Question 6 - 2024 - Paper 2

Step 1

What type of reaction is taking place in the cell above?

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Answer

The reaction taking place in the electrochemical cell is a redox reaction. In this reaction, oxidation and reduction processes occur simultaneously, involving the transfer of electrons from one species to another.

Step 2

What is the reading on the voltmeter?

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Answer

The reading on the voltmeter indicates the potential difference between the two half-cells. The standard electrode potential can be calculated as:

Ecell=EcathodeEanodeE_{cell} = E_{cathode} - E_{anode}

Given that the potentials are Ecathode=0.13VE_{cathode} = -0.13 V and Eanode=1.66VE_{anode} = -1.66 V, we find:

Ecell=0.13(1.66)=1.53VE_{cell} = -0.13 - (-1.66) = 1.53 V

Thus, the reading on the voltmeter is 1.53 V.

Step 3

Calculate the reading on the voltmeter.

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Answer

The voltmeter reading has already been calculated in the previous step as 1.53 V.

Step 4

Which ONE of the electrodes, Pb or Al, will experience a decrease in mass? Explain the answer.

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Answer

The electrode that will experience a decrease in mass is Pb (Lead). This is because during the redox reaction, lead is oxidized and loses electrons, leading to a reduction in its mass.

Step 5

Write down the net ionic cell reaction.

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Answer

The net ionic cell reaction can be expressed as:

2Al3+(aq)+3Pb(s)2Al(s)+3Pb2+(aq)2Al^{3+}(aq) + 3Pb(s) \rightarrow 2Al(s) + 3Pb^{2+}(aq)

This equation represents the oxidation of aluminum ions and the reduction of lead ions.

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