(a)
Interpretation:
The cathode potential required to reduce
Concept Introduction:
When the
E(cathode) is electrode’s potential which is attached to negative terminal of current source.
E(anode) is electrode’s potential which is attached to positive terminal of current source.
Concentration Polarization: It is the change in concentration of products and reactants at electrode’s surface unlike they are same in solution.
(a)
Answer to Problem 17.CE
The cathode potential required to reduce
Explanation of Solution
To determine: The cathode potential required to reduce
The conversion of cobalt ion into cobalt requires certain cathode potential which s calculated as follows,
(b)
Interpretation:
The cathode potential at which the concentration of cobalt EDTA ion is
Concept Introduction:
When the electric current is too small, the voltage of cell is given as
E(cathode) is electrode’s potential which is attached to negative terminal of current source.
E(anode) is electrode’s potential which is attached to positive terminal of current source.
Concentration Polarization: It is the change in concentration of products and reactants at electrode’s surface unlike they are same in solution.
(b)
Answer to Problem 17.CE
The cathode potential at which the concentration of cobalt EDTA ion is
Explanation of Solution
To determine: The cathode potential at which the concentration of cobalt EDTA ion is
The conversion of cobalt EDTA ion into cobalt requires certain cathode potential which is calculated as follows,
(c)
Interpretation:
The cathode potential at which the concentration of cobalt EDTA ion is
Concept Introduction:
When the electric current is too small, the voltage of cell is given as
E(cathode) is electrode’s potential which is attached to negative terminal of current source.
E(anode) is electrode’s potential which is attached to positive terminal of current source.
Concentration Polarization: It is the change in concentration of products and reactants at electrode’s surface unlike they are same in solution.
(c)
Answer to Problem 17.CE
The cathode potential at which the concentration of cobalt EDTA ion is
Explanation of Solution
To determine: The cathode potential at which the concentration of cobalt EDTA ion at pH seven is
The conversion of cobalt EDTA ion into cobalt requires certain cathode potential which is calculated as follows,
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Chapter 17 Solutions
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