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Chapter 3 Electrochemistry Class 12 Chemistry NCERT Solutions

Class 12 Chemistry NCERT Solutions Chapter 3: Electrochemistry is developed and witten by our expert teachers. Students can study our solutions of Chapter 3: Electrochemistry class 12 Chemistry, Question 3.1: How would you determine the standard electrode potential of the systemMg2+ | Mg?, Can you store copper sulphate solutions in a zinc pot?, Question 3.3:Consult the table of standard electrode potentials and suggest three substances that an oxidise ferrous ions under suitable conditions., Question 3.4:Calculate the potential of hydrogen electrode in contact with a solution whose pH is 10., Question 3.5: Calculate the emf of the cell in which the following reaction takes place:, Question 3.6: The cell in which the following reactions occurs:, Question 3.7: Why does the conductivity of a solution decrease with dilution?, Question 3.8:Suggest a way to determine the Λ°m value of water., Question 3.9:The molar conductivity of 0.025 mol L−1 methanoic acid is 46.1 S cm2 mol−1. Calculate its degree of dissociation and dissociation constant. Given λ0(H+)= 349.6 S cm2 mol–1 and λ0(HCOO–) = 54.6 S cm2 mol–1, Question 3.10:If a current of 0.5 ampere flows through a metallic wire for 2 hours, then how many electrons would flow through the wire?, Question 3.11:Suggest a list of metals that are extracted electrolytically., Question 3.12:Consider the reaction: Cr2O72– + 14H+ + 6e– → 2Cr3+ + 8H2O What is the quantity of electricity in coulombs needed to reduce 1 mol

NCERT Solutions Class 12 Chemistry
Chapter 3: Electrochemistry
In text solution Answers

=Question 3.1: How would you determine the standard electrode potential of the systemMg2+ | Mg?

Question 3.1: How would you determine

=Can you store copper sulphate solutions in a zinc pot?

Can you store copper sulphate solutions

=Question 3.3:Consult the table of standard electrode potentials and suggest three substances that an oxidise ferrous ions under suitable conditions.

Question 3.3:Consult the table of

=Question 3.4:Calculate the potential of hydrogen electrode in contact with a solution whose pH is 10.

Question 3.4:Calculate the potential of

=Question 3.5: Calculate the emf of the cell in which the following reaction takes place:

Question 3.5: Calculate the emf of the

=Question 3.6: The cell in which the following reactions occurs:

Question 3.6: The cell in which the

=Question 3.7: Why does the conductivity of a solution decrease with dilution?

Question 3.7: Why does the conductivity

=Question 3.8:Suggest a way to determine the Λ°m value of water.

Question 3.8:Suggest a way to determine

=Question 3.9:The molar conductivity of 0.025 mol L−1 methanoic acid is 46.1 S cm2 mol−1. Calculate its degree of dissociation and dissociation constant. Given λ0(H+)= 349.6 S cm2 mol–1 and λ0(HCOO) = 54.6 S cm2 mol–1

Question 3.9:The molar conductivity of

=Question 3.10:If a current of 0.5 ampere flows through a metallic wire for 2 hours, then how many electrons would flow through the wire?

Question 3.10:If a current of 0.5

=Question 3.11:Suggest a list of metals that are extracted electrolytically.

Question 3.11:Suggest a list of metals

=Question 3.12:Consider the reaction:
Cr2O72– + 14H+ + 6e → 2Cr3+ + 8H2O
What is the quantity of electricity in coulombs needed to reduce 1 mol of Cr2O72– ?

Question 3.12:Consider the reaction:

=Question 3.14:Suggest two materials other than hydrogen that can be used as fuels in fuel cells.

Question 3.14:Suggest two materials

=Question 3.15: Explain how rusting of iron is envisaged as setting up of an electrochemical cell.

Question 3.15: Explain how rusting of

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