Enter electrons as e". A voltaic cell is constructed in which the anode is a H, H* half cell and the cathode is a Fe2* Fe+ half cell. The half-cell compartments are connected by a salt bridge. (Use the lowest possible coefficients. Be sure to specify states such as (ag) or (s). If a box is not needed, leave it blank.) The anode reaction is: The cathode reaction is: The net cell reaction is: In the external circuit, electrons migrate v the Fe2* Fe3+ electrode v the H2 H* electrode. In the salt bridge, anions migrate| v the H2 H* compartment v the Fe2* Fe+ compartment. +

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Chapter1: Chemical Foundations
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Enter electrons as e".
A voltaic cell is constructed in which the anode is a H, H* half cell and the cathode is a Fe"|Fe* half cell. The half-cell compartments are connected by a salt bridge.
(Use the lowest possible coefficients. Be sure to specify states such as (aq) or (s). If a box is not needed, leave it blank.)
The anode reaction is:
The cathode reaction is:
The net cell reaction is:
In the external circuit, electrons migrate
v the Fe2* Fe3+ electrode
v the H2 H* electrode.
In the salt bridge, anions migrate
v the H2 H* compartment
v the Fe2* Fe3+
compartment.
Transcribed Image Text:Enter electrons as e". A voltaic cell is constructed in which the anode is a H, H* half cell and the cathode is a Fe"|Fe* half cell. The half-cell compartments are connected by a salt bridge. (Use the lowest possible coefficients. Be sure to specify states such as (aq) or (s). If a box is not needed, leave it blank.) The anode reaction is: The cathode reaction is: The net cell reaction is: In the external circuit, electrons migrate v the Fe2* Fe3+ electrode v the H2 H* electrode. In the salt bridge, anions migrate v the H2 H* compartment v the Fe2* Fe3+ compartment.
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