After plotting the cell potential (Ecell) measured at 298 K on the y-axis versus the natural logarithm of the equilibrium quotient (ln(Q)) on the x-axis, the line of best fit is represented by the equation: y = (-0.02566)x + 1.724 What is the number of electrons transfered in the balanced equation of the redox reaction? Report your answer as a whole number. R = 8.31 V/mol·K F = 96500 C/mol
After plotting the cell potential (Ecell) measured at 298 K on the y-axis versus the natural logarithm of the equilibrium quotient (ln(Q)) on the x-axis, the line of best fit is represented by the equation: y = (-0.02566)x + 1.724 What is the number of electrons transfered in the balanced equation of the redox reaction? Report your answer as a whole number. R = 8.31 V/mol·K F = 96500 C/mol
Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter17: Electrochemistry
Section: Chapter Questions
Problem 76AP
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After plotting the cell potential (Ecell) measured at 298 K on the y-axis versus the natural logarithm of the equilibrium quotient (ln(Q)) on the x-axis, the line of best fit is represented by the equation:
y = (-0.02566)x + 1.724
What is the number of electrons transfered in the
R = 8.31 V/mol·K
F = 96500 C/mol
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