I(A) 1.5E-006- 1E-006- 5E-007- -0 -5E-007- -1E-006- -1.5E-006- 0 0.2 p,red = 1.9 μA Ep,red = 0.47 V 0.4 E (V) Ep,ox = 0.53 V P,ox = 1.9 μA T 0.6 A An++ ne 0.8 The above CV for the oxidation and reduction of a species A dissolved in 0.1 M phosphate buffer, was performed at a 3 mm diameter disc electrode with a scan rate of 0.1 V/s. Given data above, and that the diffusion coefficient (D) of A is 1 x 105 cm² s¹, answer the following questions: (d) Calculate the concentration (C) of A in Moles/L.

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter13: The Chemistry Of Solutes And Solutions
Section13.6: Expressing Solution Composition
Problem 13.7PSP
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I(A)
1.5E-006-
1E-006-
5E-007-
-0
-5E-007-
-1E-006-
-1.5E-006-
0
0.2
p,red = 1.9 μA
Ep,red = 0.47 V
0.4
E (V)
Ep,ox
p,ox
= 0.53 V
= 1.9 μα
0.6
A An++ ne-
0.8
1
The above CV for the oxidation and reduction of a species A dissolved in 0.1 M phosphate buffer, was performed at a 3 mm diameter disc electrode with a scan rate of 0.1 V/s. Given data above, and that the diffusion coefficient (D) of A is 1 x 105 cm² s¹, answer the
following questions:
(d) Calculate the concentration (C) of A in Moles/L.
Transcribed Image Text:I(A) 1.5E-006- 1E-006- 5E-007- -0 -5E-007- -1E-006- -1.5E-006- 0 0.2 p,red = 1.9 μA Ep,red = 0.47 V 0.4 E (V) Ep,ox p,ox = 0.53 V = 1.9 μα 0.6 A An++ ne- 0.8 1 The above CV for the oxidation and reduction of a species A dissolved in 0.1 M phosphate buffer, was performed at a 3 mm diameter disc electrode with a scan rate of 0.1 V/s. Given data above, and that the diffusion coefficient (D) of A is 1 x 105 cm² s¹, answer the following questions: (d) Calculate the concentration (C) of A in Moles/L.
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