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The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla galvanic cell is represented by the notation [AIIMS-2005 A. Pt(s) H2(g). 1bar | 1MKCl(aq) | AgCl(s) | Ag(s) Pt(s)|H₂(g). 1bar | 1MKC(aq) | 1M Ag(s) | Ag(s) C. D. Pt(s) H2(g). 1bar | 1MHCl(aq) | AgCl(s) | Ag(s) Pt(s) H2(g). 1bar | 1MHCl(aq) | Ag(s) | AgCl(s The answer is C please explain how?
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The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla...
The given chemical reaction is: 2AgCl(s) + H2(g) → 2HCl(aq) + 2Ag(s)

This reaction takes place in a galvanic cell that consists of two half-cells. The notation for this cell is represented as:

[Pt(s) | H2(g) | 1 bar] | [1 M KCl(aq) | AgCl(s) | Ag(s) | Pt(s) | H2(g) | 1 bar]

Now let's break down the notation and understand each component:

1. Anode Half-Cell:
- Electrode: Pt(s) (Platinum electrode)
- Gas: H2(g) at 1 bar pressure
- Role: Oxidation of H2 gas to release electrons

2. Cathode Half-Cell:
- Electrolyte: 1 M KCl(aq) (Potassium chloride solution)
- Salt Bridge: Separates the two half-cells and allows ion migration
- Electrode: AgCl(s) | Ag(s) (Silver chloride electrode with solid silver)
- Role: Reduction of AgCl to Ag and deposition of silver metal

Now let's understand the flow of the reaction in the cell:

1. At the anode (oxidation half-reaction):
H2(g) → 2H+(aq) + 2e-
Hydrogen gas is oxidized, releasing two protons (H+) and two electrons (e-).

2. At the cathode (reduction half-reaction):
AgCl(s) + e- → Ag(s) + Cl-(aq)
Silver chloride is reduced by gaining an electron to form solid silver and chloride ions.

3. Overall reaction:
2AgCl(s) + H2(g) → 2HCl(aq) + 2Ag(s)
The two half-reactions combine, and silver chloride is converted into silver metal while hydrogen gas is consumed to produce hydrochloric acid.

The cell notation helps in representing the overall reaction and the components involved in the galvanic cell. In this case, the correct notation is Option C, as it represents the correct arrangement of the electrodes, gases, and electrolytes in the cell.

Note: The notation includes the physical states of the substances, the electrodes, and the concentrations of the electrolytes. It also represents the direction of electron flow from the anode to the cathode.
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The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla galvanic cell is represented by the notation [AIIMS-2005 A. Pt(s) H2(g). 1bar | 1MKCl(aq) | AgCl(s) | Ag(s) Pt(s)|H₂(g). 1bar | 1MKC(aq) | 1M Ag(s) | Ag(s) C. D. Pt(s) H2(g). 1bar | 1MHCl(aq) | AgCl(s) | Ag(s) Pt(s) H2(g). 1bar | 1MHCl(aq) | Ag(s) | AgCl(s The answer is C please explain how?
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The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla galvanic cell is represented by the notation [AIIMS-2005 A. Pt(s) H2(g). 1bar | 1MKCl(aq) | AgCl(s) | Ag(s) Pt(s)|H₂(g). 1bar | 1MKC(aq) | 1M Ag(s) | Ag(s) C. D. Pt(s) H2(g). 1bar | 1MHCl(aq) | AgCl(s) | Ag(s) Pt(s) H2(g). 1bar | 1MHCl(aq) | Ag(s) | AgCl(s The answer is C please explain how? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla galvanic cell is represented by the notation [AIIMS-2005 A. Pt(s) H2(g). 1bar | 1MKCl(aq) | AgCl(s) | Ag(s) Pt(s)|H₂(g). 1bar | 1MKC(aq) | 1M Ag(s) | Ag(s) C. D. Pt(s) H2(g). 1bar | 1MHCl(aq) | AgCl(s) | Ag(s) Pt(s) H2(g). 1bar | 1MHCl(aq) | Ag(s) | AgCl(s The answer is C please explain how? covers all topics & solutions for NEET 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The chemical reaction, 2AgCl(s) H2(g) 2HCl(aq) 2Ag(s) taking pla galvanic cell is represented by the notation [AIIMS-2005 A. Pt(s) H2(g). 1bar | 1MKCl(aq) | AgCl(s) | Ag(s) Pt(s)|H₂(g). 1bar | 1MKC(aq) | 1M Ag(s) | Ag(s) C. D. Pt(s) H2(g). 1bar | 1MHCl(aq) | AgCl(s) | Ag(s) Pt(s) H2(g). 1bar | 1MHCl(aq) | Ag(s) | AgCl(s The answer is C please explain how?.
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