11. The reduction potentials for Ni2+ and Sn2+ are given in the table. Calculate the equilibrium constant at 25 °C for the reaction: Sn2+ + Ni = Sn + Ni2+ A) 3.6 x 1012 В) 35 C) 5.9 D) 8.3 x 104 E) 1.0 x 103
11. The reduction potentials for Ni2+ and Sn2+ are given in the table. Calculate the equilibrium constant at 25 °C for the reaction: Sn2+ + Ni = Sn + Ni2+ A) 3.6 x 1012 В) 35 C) 5.9 D) 8.3 x 104 E) 1.0 x 103
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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![11. The reduction potentials for Ni?+ and Sn²+ are given in the table.
Calculate the equilibrium constant at 25 °C for the reaction:
Sn2+ + Ni Sn + Ni2+
A) 3.6 x 102
В) 35
С) 5.9
D) 8.3 x 104
E) 1.0 x 10³](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff8611dd0-bec4-4a4b-817a-506c6edbcae0%2F93c206a1-9d06-4204-8011-f89b3b42cd80%2Fvzciisi_processed.jpeg&w=3840&q=75)
Transcribed Image Text:11. The reduction potentials for Ni?+ and Sn²+ are given in the table.
Calculate the equilibrium constant at 25 °C for the reaction:
Sn2+ + Ni Sn + Ni2+
A) 3.6 x 102
В) 35
С) 5.9
D) 8.3 x 104
E) 1.0 x 10³
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