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{:(Column-I,Column-II),((A)"Electrolytic...

`{:(Column-I,Column-II),((A)"Electrolytic cell",(p)-DeltaG^(@)),((B)nFE_(cell)^(0),(q)"Concentration cell"),((C)E_(cell)=(0.059)/(n)log.(C_("cathode"))/(C_("anode")),(r)96500 "Coulombs"),((D)"Diffusion of ions",(s)"Device converting electrical energy into chemical energy"),((E)1"Farday",(u)"Salt bridge"):}`

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To solve the matching question, we will analyze each item in Column I and find the corresponding item in Column II based on their definitions and relationships in electrochemistry. ### Step-by-Step Solution: 1. **Match A: "Electrolytic cell"** - An electrolytic cell is a device that converts electrical energy into chemical energy. Therefore, it matches with: - **(s) "Device converting electrical energy into chemical energy"**. - **Match: A - s** 2. **Match B: "nFE_cell^(0)"** - The relationship between Gibbs free energy and cell potential is given by the equation: ΔG° = -nFE°_cell. Thus, it matches with: - **(p) -ΔG^(0)**. - **Match: B - p** 3. **Match C: "E_cell = (0.059/n) log(C_cathode/C_anode)"** - This equation represents the Nernst equation for a concentration cell, where the cell potential depends on the concentrations of the reactants and products. Therefore, it matches with: - **(q) "Concentration cell"**. - **Match: C - q** 4. **Match D: "Diffusion of ions"** - In electrochemical cells, the diffusion of ions occurs through the salt bridge, which maintains the ionic balance in the cell. Thus, it matches with: - **(u) "Salt bridge"**. - **Match: D - u** 5. **Match E: "1 Faraday"** - One Faraday is defined as the charge of one mole of electrons, which is equal to approximately 96500 coulombs. Therefore, it matches with: - **(r) "96500 Coulombs"**. - **Match: E - r** ### Final Matches: - A - s - B - p - C - q - D - u - E - r
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ALLEN-ELECTROCHEMISTRY-EXERCISE-03
  1. Match the items of column I to those of column I: {:(Column-I, Colu...

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  2. {:(Column-I,Column-II),((A)"Cathode",(p)"Primary cell"),((B)1"Coulomb"...

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  3. {:(Column-I,Column-II),((A)"Electrolytic cell",(p)-DeltaG^(@)),((B)nFE...

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  4. {:(Column-I,Column-II),((A)"Conductance",(p)Cm^(-1)),((B)"Specific con...

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  5. Statement-I: In electrolysis the quantity needed for depositing 1 mole...

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  6. Statement-I: Equivalent conductance of all electrolytes decreases with...

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  7. Statement-I: If an aqueous solution of NaCI is electrolysed, the produ...

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  8. Statement-I: Molar conductivity of a weak electrolyte at infinite dilu...

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  9. Statement-I: Gold chloride (AuCI(3)) solution cannot be stored in a ve...

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  10. Statement-I: In the Daniel cell, if concentration of Cu^(2+) and Zn^(2...

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  11. STATEMENT 1 H(2)+O(2) fuel cel gives a constant voltage throughout its...

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  12. A: Block of magnesium are often stapped to steel hulls of ocean going ...

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  13. Statement-I: Absolute value of E(red)^(0) of an electrode cannot be de...

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  14. Copper reduced NO(3)^(-) into NO and NO(2) depending upon conc.of HNO(...

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  15. Copper reduced NO(3)^(-) into NO and NO(2) depending upon conc.of HNO(...

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  16. Accidentally chewing on a stray fragmet of aluminium foil can causes a...

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  17. Accidentally chewing on a stray fragmet of aluminium foil can causes a...

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  18. Accidentally chewing on a stray fragmet of aluminium foil can causes a...

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  19. A sample of water from a large swimming pool has a resistance of 10000...

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  20. A sample of water from a large swimming pool has a resistance of 10000...

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