The black tarnish that forms on silver objects is primarily Ag.S. The half reaction for reversing the tarnishing process is as follows: a. Predict which of the following can reduce Ag.S to Ag under standard condition (Use data from the Standard Reduction Potential table) • H;Oza • Zne) Sn b. Of those mentioned in (a), identify which is the strongest reducing agent in aqueous solution and thus best candidate for a commercial product c. Suggest an alternative reducing agent that is readily available, inexpensive, and possibly more effective at removing tarnish (Use data from the Standard Reduction Potential table)

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The black tarnish that forms on silver objects is primarily Ag2S. The half reaction for reversing the
tarnishing process is as follows:
a. Predict which of the following can reduce Ag.S to Ag under standard condition (Use data from the
Standard Reduction Potential table)
• H2O2{aq)
• Zne)
Sn" (ae)
b. Of those mentioned in (a), identify which is the strongest reducing agent in aqueous solution and
thus best candidate for a commercial product
c. Suggest an alternative reducing agent that is readily available, inexpensive, and possibly more
effective at removing tarnish (Use data from the Standard Reduction Potential table)
Transcribed Image Text:The black tarnish that forms on silver objects is primarily Ag2S. The half reaction for reversing the tarnishing process is as follows: a. Predict which of the following can reduce Ag.S to Ag under standard condition (Use data from the Standard Reduction Potential table) • H2O2{aq) • Zne) Sn" (ae) b. Of those mentioned in (a), identify which is the strongest reducing agent in aqueous solution and thus best candidate for a commercial product c. Suggest an alternative reducing agent that is readily available, inexpensive, and possibly more effective at removing tarnish (Use data from the Standard Reduction Potential table)
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