■ Redox reaction in electrolysis
| ► | Both molten state and aqueous solution:
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| ► | Electrons flow through the external circuit from the anode of a reducing agent to the oxidising agent in the cathode. |
| ► | Anode → electron loss occurs![]() |
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| ► | Cathode → electron acceptance occurs![]() |
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| ► | Half ionic equation:
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| ► | Overall equation:
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| ► | Colourless gas bubbles are liberated at cathode electrode anode electrode. | |||||
| ► | Gas liberated at cathode electrode rekindles a glowing splinter. Gas liberated at anode produces 'pop' sound when tested with a lighted splinter. |
Redox reaction in chemical cells
■ Simple voltaic cell (chemical cell)
| ► | Consists of two different metal electrodes. | |||||
| ► | Connected to the end of the wire and the other end dipped into an electrolyte solution. | |||||
| ► | Potential difference generated depends on the difference in the position of the metal used in the electrochemical series.
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| ► | Consists of two different metal electrodes immersed in two separate electrolyte solutions. | |
| ► | Electrolyte solution can be separated either by a porous pot or a salt bridge | |
| ► | Function of porous pot or salt bridge: to separate two electrolyte solutions but allow ions to pass through to complete a circuit. | |
| ► | Chemical energy → electrical energy. |
| ► | Arrangement of a Daniel cell (Electrolyte solution separated by a salt bridge or porous pot)![]() |
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| ► | Negative terminal → electron loss occurs![]() |
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| ► | Positive terminal → electron acceptance occurs![]() |
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| ► | Half ionic equation:
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| ► | Overall equation:
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| ► | Observation:
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Redox reaction in other voltaic cells
■ Redox reaction in other voltaic cells
| ► | The electron flow from negative terminal to positive terminal to produces electrical energy. |
| ► | Negative terminal → electron loss occurs![]() |
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| ► | Positive terminal → electron acceptance occurs![]() |
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| ► | Half ionic equation:
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| ► | Overall equation:
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| ► | Negative terminal → electron loss occurs![]() |
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| ► | Positive terminal → electron acceptance occurs![]() |
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| ► | Half ionic equation:
|
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| ► | Overall equation:
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| ► | Negative terminal → electron loss occurs![]() |
|||||
| ► | Positive terminal → electron acceptance occurs![]() |
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| ► | Half ionic equation:
|
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| ► | Overall equation:
|
| ► | Negative terminal → electron loss occurs![]() |
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| ► | Positive terminal → electron acceptance occurs![]() |
|||||
| ► | Half ionic equation:
|
|||||
| ► | Overall equation:
|
| ► | Negative terminal → electron loss occurs![]() |
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| ► | Positive terminal → electron acceptance occurs![]() |
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| ► | Half ionic equation:
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| ► | Overall equation:
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Laboratory Activity 3.4.1: Redox reactions in electrolytic and chemical cells |
Differences between Chemical Cells and Electrolytic Cells
■ Similarities of electrolytic cell and voltaic cell
| ► | Oxidation occurs in the anode while reduction occurs in the cathode | |
| ► | Electrons transfer from anode to cathode | |
| ► | Oxidation involves the lost of electrons while reduction involves obtaining electrons |
| ► |
|
| ✍ Worked-example 3.4(a) Choose true or false for the statement given.
|
| ⇲ For exercise(objective and subjective), download for free on Android OS. | |
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THANKYOUU this helped out a lot
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