Chapter 10: Electrochemistry

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Q.1

How and why electrical double layer is formed?

Electrode Potential

Q.2

Why electrode potential of Cu is called reduction potential?

Q.3

How electrode potential varies with concentration of an aqueous solution? Use the NERST equation to explain this variation.

Q.4

How can we predict the feasibility of a chemical reaction using the cell voltage?

Electrochemical Cells

Q.4

How Avogadro's number can be derived using an electrolytic cell?

Q.5

During electrolysis of aqueous NaCl, why Na is not liberated at the cathode?

Q.5

Describe working principle of the Zn - Cu Galvanic cell.

Q.6

Calculate the Ox. No. of chromium (Cr) in the following compounds: (Ii) Cr2(SO4)3 (i) CrCl3 (ili) Cr;O.,

Q.6

What Hydrogen Electrode (SHE)? How it is used to measure the electrode potential of another electrode?

Q.7

The order of decreasing reactivity of metals based on their position is K> Mg > Zn > Fe > Cu. Write balanced chemical equations for the reactions that would occur (if any) when: (i) Copper is added to a solution of magnesium sulfate. (ii) Iron is added to a dilute solution of hydrochloric acid.

Oxidation and Reduction

Q.7

Calculate the electrode potential for a zine electrode immersed in a 0.010 mol dm3 solution of zine sulfate (ZnSO4) at 298 K. The standard electrode potential (E°) for Zma) + 2e = Z is -0.76 V. (Gas constant, R = 8.31 J K- mol, Faraday constant, F = 96500 C mol) Solution: Given: • Standard electrode potential, E° = - 0.76 V • Concentration of Zn?* = 0.010 mol dm3 • Temperature, T = 298 K • Gas constant, R = 8.31 JK mol-1 • Faraday constant, F = 96500 C mol Step 1: Write the half-cell reaction Zn?+ → Ln (s) (aq) + 2e - Number of electrons transferred, n = 2. Step 2: Write the Nernst equation RT E=E° - In Q nF Here, Q is the reaction quotient for the half reaction: - =100 Q=[Zn•]0.01O (Since solid zinc activity = 1) balance atoms of nitrogen (if in the equation). Thirdly, balance atoms of oxygen (if in the equation). Lastly, balance atoms of hydrogen (if in the equation). and the construction

Q.8

Explain why some metals higher in the activity series can displace hydrogen • in the from acids, while others lower series cannot.

Q.8

A constant current of 2.00 A is passed through a solution of copper(I) sulfate (CuSO4) for 30.0 minutes. Calculate the mass of copper deposited at the cathode. (Molar mass of Cu = 63.5 g mol-1, Faraday constant, F = 96500 C mol?) Solution: Given: • Current, I = 2.00 A • Molar mass of Cu = 63.5 g/mol • Faraday constant, F = 96500 C/mol Step 1: Write the cathode half-reaction Cu2+ +2é → Cu(s) This means 2 moles of electrons are required to deposit 1 mole of Cu. Step 2: Calculate total charge passed Q=Ixt = 2.00 × 1800 = 3600 C Step 3: Calculate moles of electrons transferred 3600 • = - Moles of electrons = - ~ 0.0373 mole F 96500 Step 4: Use mole ratio to find moles of copper deposited From the reaction: 2 mol e → 1 mol Cu 0.0373 - = 0.01865 mole So, Moles of Cu deposited = - 2 Step 5: Calculate mass of copper deposited Mass = moles × molar mass = 0.01865 × 63.5 = 1.18 g

Q.9
Calculate Number of Faradays required to deposit 108 g of Ag't, 63.5 g of Cu2+ and 27g of Al+? number

Q.9

A galvanic cell consists of a standard hydrogen electrode (SHE) and a Niaq) / Ni) half-cell. The measured cell potential at 298 K is 0.25 V, and the nickel electrode is the negative terminal. (a) Write the balanced overall cell reaction. (b) Determine the standard electrode potential (E°) of the Ni-+ (c) Identify which electrode is the anode and which is the cathode. (a) Write the balanced overall cell reaction. First, identify the half-reactions (1) Standard Hydrogen Electrode (SHE) 2H(ag) + 2e → H2(g) (2) Nickel Half-cell (reverse of reduction): Since nickel is the negative terminal, it acts as the anode (oxidation occurs), so the reaction is: Ni (s) → Ni?t) + 2e Overall Cell Reaction Add the two half-reactions: '(aq) Nils) + 2H

Q.11

A cell is set up with a standard nickel electrode Ning) + 2e = Nic) E°= - 0.25 V) and a standard cobalt electrode Cotag) + 2e = Co(s), E°= - 0.28 V). (i) Identify which metal will be the anode and which will be the cathode. Justify your

Introduction to Electrochemistry

Q.12

What is electrochemistry?

Q.13

What is a redox reaction? A redox reaction is a chemical reaction that involves the transfer of electrons. One substance is oxidized (loses electrons), and another is reduced gains electrons). Example ZM (g) + Cu(a4) → Z(ag) + CU(s) (Zn is oxidized; Cu2+ is reduced)

Oxidation and Reduction

Electrochemical Series

Q.14

What is oxidation in terms of electron transfer? Oxidation is the loss of electrons by an atom or ion. Example Na (s) → Na(ag) + e (Sodium loses one electron) reduction potential, so it is more easily oxidized than Ni. (ii) Write the balanced overall cell reaction: • Anode (oxidation): • Cathode (reduction): Nag) + 2e → Ni(s) Overall cell reaction: → CO (ag) + Ni(s) CO(s) + Ni(ag) (iii) Calculate the standard cell potential (Eºcell): E° 'anode cell = E° "cathode - E° Ecell = (- 0.25 V) - (- 0.28 V) = +0.53 V

Q.15

What is reduction in terms of electron transfer?

Q.16

Write rapture of photosynthesis and respiration reactions.

Electrochemical Cells

Q.17

What is an electrochemical cell?

Q.19

What are electrodes?

Galvanic (Voltaic) Cell

Q.20

What is a galvanic cell?

Q.21

Which electrode is negative in a galvanic cell and why?

Q.22

What flows in the external circuit of a galvanic cell? to

Q.23

Why is Daniell cell important in electrochemistry?

Electrolytic Cell

Q.24

What is an electrolytic cell?

Q.25

Which electrode is positive in an electrolytic cell?

Q.26

What happens during electrolysis of molten Nacl?

Q.27

What is electroplating?

Electrode Potential

Q.28

What is electrode potential?

Q.29

What potential (E°)?

Q.30

What is the standard hydrogen electrode (SHE)?

Q.31

Why is SHE used as a reference?

Q.32

What is EMF of a cell?

Q.33

How is cell potential related to spontaneity?

Q.34

How do you write cell notation for a galvanic cell?

Electrochemical Series

Q.35

What is the electrochemical series?

Q.37

Why is reducing agent?

Q.38

Hur are galvanic cells used in daily life?

Q.39

What is the principle of a dry cell?

Q.41

What is a conductor and how is it different from an electrolyte?

Q.42

What is Faraday's First Law of Electrolysis?

Q.43

What is oxidation in different hydrogen and oxygen compounds.

Q.44

How change in oxidation number is predicted from chemical equation?

Q.45

What is hit and trial method in balancing redox equations?