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The cell notation below represents an electrochemical cell: Cu/Cu²⁺ (1 mol⋅dm⁻³) // Ag⁺ (1 mol⋅dm⁻³) / Ag 298 K/25 °C 6.1.1 What energy conversion is taking place in the above cell? 6.1.2 Write down TWO indicators from the cell notation that prove that the cell is operating under standard conditions - NSC Technical Sciences - Question 6 - 2022 - Paper 2

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The-cell-notation-below-represents-an-electrochemical-cell:--Cu/Cu²⁺-(1-mol⋅dm⁻³)-//-Ag⁺-(1-mol⋅dm⁻³)-/-Ag-298-K/25-°C--6.1.1-What-energy-conversion-is-taking-place-in-the-above-cell?--6.1.2-Write-down-TWO-indicators-from-the-cell-notation-that-prove-that-the-cell-is-operating-under-standard-conditions-NSC Technical Sciences-Question 6-2022-Paper 2.png

The cell notation below represents an electrochemical cell: Cu/Cu²⁺ (1 mol⋅dm⁻³) // Ag⁺ (1 mol⋅dm⁻³) / Ag 298 K/25 °C 6.1.1 What energy conversion is taking place ... show full transcript

Worked Solution & Example Answer:The cell notation below represents an electrochemical cell: Cu/Cu²⁺ (1 mol⋅dm⁻³) // Ag⁺ (1 mol⋅dm⁻³) / Ag 298 K/25 °C 6.1.1 What energy conversion is taking place in the above cell? 6.1.2 Write down TWO indicators from the cell notation that prove that the cell is operating under standard conditions - NSC Technical Sciences - Question 6 - 2022 - Paper 2

Step 1

What energy conversion is taking place in the above cell?

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Answer

The energy conversion occurring in the electrochemical cell is from chemical energy to electrical energy. This transformation is indicative of the redox reactions happening within the cell.

Step 2

Write down TWO indicators from the cell notation that prove that the cell is operating under standard conditions.

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Answer

Firstly, the notation shows a temperature of 25 °C, which corresponds to standard conditions. Secondly, the notation specifies that the concentrations of the electrolytes are each at 1 mol⋅dm⁻³, meeting the standard conditions requirement.

Step 3

Write down a balanced half-reaction that occurs at the cathode.

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Answer

At the cathode, the half-reaction can be represented as:

extAg+(aq)+eAg(s) ext{Ag}^+(aq) + e^- \rightarrow \text{Ag}(s)

Step 4

Write down a balanced half-reaction that occurs at the anode.

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Answer

At the anode, the half-reaction can be expressed as:

Cu(s)Cu2+(aq)+2e\text{Cu}(s) \rightarrow \text{Cu}^{2+}(aq) + 2e^-

Step 5

Use calculations to conclude whether the reaction is SPONTANEOUS or NON-SPONTANEOUS.

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Answer

To determine spontaneity, we calculate the cell potential using the following equation:

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

Given values:

  • For the cathode (Ag): EAg+/Ag=+0.80extVE_{Ag^+/Ag} = +0.80 ext{ V}
  • For the anode (Cu): ECu2+/Cu=+0.34extVE_{Cu^{2+}/Cu} = +0.34 ext{ V}

Thus: Ecell=+0.80extV(+0.34extV)=+0.46extVE_{cell} = +0.80 ext{ V} - (+0.34 ext{ V}) = +0.46 ext{ V}

Since EcellE_{cell} is positive, the reaction is SPONTANEOUS.

Step 6

Give a reason for the answer to QUESTION 6.3.

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Answer

The reaction is classified as spontaneous because the positive cell potential (Ecell=+0.46extVE_{cell} = +0.46 ext{ V}) indicates that the electrochemical process can proceed without external energy input.

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