18.4
Consider two containers having different fluid levels. When connected, the liquid flows from the higher to the lower level. By measuring the individual fluid levels, the flow direction can be predicted.
Comparatively, in a galvanic cell, knowing individual electrode potentials helps predict the oxidant, reductant, and flow of electrons. Here, each half-cell has its corresponding electrode potential. However, the individual electrode potential cannot be measured directly but only the potential difference between the two half-cells. So how is it calculated?
To determine individual electrode potentials, one electrode is assigned a potential of zero, and the other electrode’s potentials are measured relative to it.
The electrode with a potential of zero is the hydrogen electrode under standard-state conditions, also called the standard hydrogen electrode, or SHE. The SHE is operated at 25 °C, consisting of an inert platinum electrode partially submerged in 1 molar hydrochloric acid and exposed to a stream of hydrogen gas at 1 atmosphere.
When a zinc electrode is connected to the SHE, its mass reduces, indicating its oxidation to Zn2+ ions. Simultaneous increased production of hydrogen
On comparing the reactivity of silver and lead, it is observed that the two ionic species, Ag+ (aq) and Pb2+ (aq), show a difference in their redox re…
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