(a)
Interpretation:
The half-cell reactions and overall reactions for the given
Concept Introduction:
The amount of electrical charge that is passing through a circuit depends upon the amount and time of the flow of current. The electrical charge is measured in Coulomb.
Where,
Faradays First law of electrolysis says that the quantity of substance deposited on an electrode is proportional to the charge passed through the solution.
Where,
Ideal gas equation is an equation that is describing the state of a imaginary ideal gas.
Where,
(b)
Interpretation:
The half-cell reactions and overall reactions for the given electrolysis has to be found and the purpose of adding
Concept Introduction:
The amount of electrical charge that is passing through a circuit depends upon the amount and time of the flow of current. The electrical charge is measured in Coulomb.
Where,
Faradays First law of electrolysis says that the quantity of substance deposited on an electrode is proportional to the charge passed through the solution.
Where,
Ideal gas equation is an equation that is describing the state of a imaginary ideal gas.
Where,
(c)
Interpretation:
The half-cell reactions and overall reactions for the given electrolysis has to be found and the purpose of adding
Concept Introduction:
The amount of electrical charge that is passing through a circuit depends upon the amount and time of the flow of current. The electrical charge is measured in Coulomb.
Where,
Faradays First law of electrolysis says that the quantity of substance deposited on an electrode is proportional to the charge passed through the solution.
Where,
Ideal gas equation is an equation that is describing the state of a imaginary ideal gas.
Where,
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