A galvanic cell was built using Zinc and iron. For this Galvanic cell complete the following a. Write a balanced reduction half-reaction b. Write a balanced oxidation half-reaction c. Write the overall balanced equation for the cell d. The electrons flow from the metal beaker to the metal beaker ( e. The negative ions flow into the metal beaker and the positive ions flow into the metal beaker f. Write the cell notation g. Draw a fully labelled galvanic cell made with your assigned metal combination. You can use potassium nitrate as the solution in your salt bridge (KNO3). Labels should be specific to your metals/solutions and include (8): Anode and solution, Cathode and solution, Half-reactions, Salt Bridge and solution, Arrows to display movement of ions, Arrows to display electron movement, Show where oxidation occurs, Show where reduction occurs. You can use the image below as a template.

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Answer D, E and G please
A galvanic cell was built using Zinc and iron. For this Galvanic cell complete the
following
a. Write a balanced reduction half-reaction
b. Write a balanced oxidation half-reaction
c. Write the overall balanced equation for the cell
d. The electrons flow from the
metal beaker to the
metal beaker (
e. The negative ions flow into the
metal beaker and the positive ions
flow into the
metal beaker
f. Write the cell notation
g. Draw a fully labelled galvanic cell made with your assigned metal combination. You
can use potassium nitrate as the solution in your salt bridge (KNO3). Labels should
be specific to your metals/solutions and include (8): Anode and solution, Cathode
and solution, Half-reactions, Salt Bridge and solution, Arrows to display movement of
ions, Arrows to display electron movement, Show where oxidation occurs, Show
where reduction occurs. You can use the image below as a template.
Transcribed Image Text:A galvanic cell was built using Zinc and iron. For this Galvanic cell complete the following a. Write a balanced reduction half-reaction b. Write a balanced oxidation half-reaction c. Write the overall balanced equation for the cell d. The electrons flow from the metal beaker to the metal beaker ( e. The negative ions flow into the metal beaker and the positive ions flow into the metal beaker f. Write the cell notation g. Draw a fully labelled galvanic cell made with your assigned metal combination. You can use potassium nitrate as the solution in your salt bridge (KNO3). Labels should be specific to your metals/solutions and include (8): Anode and solution, Cathode and solution, Half-reactions, Salt Bridge and solution, Arrows to display movement of ions, Arrows to display electron movement, Show where oxidation occurs, Show where reduction occurs. You can use the image below as a template.
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