Consider the galvanic cell shown below: Zinc Zn(NO3)2 solution Select one: 1.60 g 1.00 g 0.60 g O 0.30 g Silver AgNO3 solution Porous separator The atomic masses (in g/mol) ar: Zn = 65, Ag = 107, N = 13.0, and O = 16.0. During 15 minutes of operation the silver electrode changed in mass by 1.00 g. The change in mass of the zinc electrode during the same time would be:

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Chapter1: Chemical Foundations
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**Galvanic Cell Example**

Consider the galvanic cell shown below:

[Diagram Description: The diagram displays a galvanic cell with two electrodes. The left side features a zinc electrode immersed in a Zn(NO₃)₂ solution. The right side has a silver electrode submerged in an AgNO₃ solution. The two solutions are separated by a porous separator.]

**Atomic Masses:**
- Zn (Zinc) = 65 g/mol
- Ag (Silver) = 107 g/mol
- N (Nitrogen) = 13.0 g/mol
- O (Oxygen) = 16.0 g/mol

During 15 minutes of operation, the silver electrode experiences a change in mass by 1.00 g. Determine the change in mass of the zinc electrode during this same period.

**Options:**
- 1.60 g
- 1.00 g
- 0.60 g
- 0.30 g

Select the correct mass change for the zinc electrode.
Transcribed Image Text:**Galvanic Cell Example** Consider the galvanic cell shown below: [Diagram Description: The diagram displays a galvanic cell with two electrodes. The left side features a zinc electrode immersed in a Zn(NO₃)₂ solution. The right side has a silver electrode submerged in an AgNO₃ solution. The two solutions are separated by a porous separator.] **Atomic Masses:** - Zn (Zinc) = 65 g/mol - Ag (Silver) = 107 g/mol - N (Nitrogen) = 13.0 g/mol - O (Oxygen) = 16.0 g/mol During 15 minutes of operation, the silver electrode experiences a change in mass by 1.00 g. Determine the change in mass of the zinc electrode during this same period. **Options:** - 1.60 g - 1.00 g - 0.60 g - 0.30 g Select the correct mass change for the zinc electrode.
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