1. Given the following reduction potentials: Agʻ(aq) + e → Ag(s) Zn? (aq) + 2e Zn(s) Calculate the cell potential for the following reaction and predict whether the reaction will take place. If it will take place write the cell notation. Zna"(aq) + 2Ag(s)→ Zn(s) + 2Ag*(aq) E° = 0.80 V; E° = -0.76 V

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PART 2: Answer what is asked for each problem and show your solution. Round your answers
to four decimal places and they must be enclosed all in a box.
1. Given the following reduction potentials:
Ag*(aq) + e → Ag(s)
Zn?"(aq) + 2e → Zn(s)
Calculate the cell potential for the following reaction and predict whether the reaction will
take place. If it will take place write the cell notation.
Znº"(aq) + 2Ag(s)→ Zn(s) + 2Ag*(aq)
E° = 0.80 V;
E° = -0.76 V
2. A chromium metal was deposited coming from a solution of Cr*³. The amount of the said
metal deposited weighs 2.19 g. The process is made possible through a current of 35.2
Amperes in electrolyte cell. Determine the following:
a. How much charge (in C) is required?
b. How long (in min) would it take for the reaction to occur?
Transcribed Image Text:PART 2: Answer what is asked for each problem and show your solution. Round your answers to four decimal places and they must be enclosed all in a box. 1. Given the following reduction potentials: Ag*(aq) + e → Ag(s) Zn?"(aq) + 2e → Zn(s) Calculate the cell potential for the following reaction and predict whether the reaction will take place. If it will take place write the cell notation. Znº"(aq) + 2Ag(s)→ Zn(s) + 2Ag*(aq) E° = 0.80 V; E° = -0.76 V 2. A chromium metal was deposited coming from a solution of Cr*³. The amount of the said metal deposited weighs 2.19 g. The process is made possible through a current of 35.2 Amperes in electrolyte cell. Determine the following: a. How much charge (in C) is required? b. How long (in min) would it take for the reaction to occur?
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