When the Hg2+ concentration is 1.63×104 M, the observed cell potential at 298K for an electrochemical cell with the following reaction is 2.401V. What is the A13+ concentration? 3Hg²+(aq) + 2Al(s)—>3Hg(1) + 2A13+(aq) Answer: M When the Hg2+ concentration is 8.18×104 M, the observed cell potential at 298K for an electrochemical cell with the following reaction is 1.503V. What is the Cr3+ concentration? 3Hg²+(aq) + 2Cr(s)—>3Hg(1) + 2Cr3+(aq) Answer: 1.49x10^ | M

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Chapter19: Electrochemistry
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Problem 19.70QP: Calculate the standard cell potential of the following cell at 25C. Sn(s)Sn2+(aq)I2(aq)I(aq)
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When the Hg2+ concentration is 1.63×104 M, the observed
cell potential at 298K for an electrochemical cell with the
following reaction is 2.401V. What is the A13+ concentration?
3Hg²+(aq) + 2Al(s)—>3Hg(1) + 2A13+(aq)
Answer:
M
Transcribed Image Text:When the Hg2+ concentration is 1.63×104 M, the observed cell potential at 298K for an electrochemical cell with the following reaction is 2.401V. What is the A13+ concentration? 3Hg²+(aq) + 2Al(s)—>3Hg(1) + 2A13+(aq) Answer: M
When the Hg2+ concentration is 8.18×104 M, the observed
cell potential at 298K for an electrochemical cell with the
following reaction is 1.503V. What is the Cr3+ concentration?
3Hg²+(aq) + 2Cr(s)—>3Hg(1) + 2Cr3+(aq)
Answer: 1.49x10^ | M
Transcribed Image Text:When the Hg2+ concentration is 8.18×104 M, the observed cell potential at 298K for an electrochemical cell with the following reaction is 1.503V. What is the Cr3+ concentration? 3Hg²+(aq) + 2Cr(s)—>3Hg(1) + 2Cr3+(aq) Answer: 1.49x10^ | M
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