Calculate the activity coefficient, y, of Nit when the ionic strength of the solution, u, is 0.071 M by linear interpolation of the data in the table. YN+ %3D Calculate the activity coefficient, y, of Ni2+ when the ionic strength of the solution, u, is 0.071 M by using the extended Debye-Hückel equation at 25 °C, where the ion size is 600 pm.

Fundamentals Of Analytical Chemistry
9th Edition
ISBN:9781285640686
Author:Skoog
Publisher:Skoog
Chapter21: Potentiometry
Section: Chapter Questions
Problem 21.23QAP
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Calculate the activity coefficient, y, of Ni2+ when the
Ionic
Activity
coefficient
ionic strength of the solution, u, is 0.071 M by linear
interpolation of the data in the table.
strength
(u, M)
(YNP)
0.001
0.870
0.005
0.749
YNi+ =
0.01
0.675
0.05
0.485
0.1
0.405
Calculate the activity coefficient, y, of Ni?+ when the
ionic strength of the solution, 4, is 0.071 M by using the
extended Debye-Hückel equation at 25 °C, where the ion
size is 600 pm.
YN+
%3D
Transcribed Image Text:Calculate the activity coefficient, y, of Ni2+ when the Ionic Activity coefficient ionic strength of the solution, u, is 0.071 M by linear interpolation of the data in the table. strength (u, M) (YNP) 0.001 0.870 0.005 0.749 YNi+ = 0.01 0.675 0.05 0.485 0.1 0.405 Calculate the activity coefficient, y, of Ni?+ when the ionic strength of the solution, 4, is 0.071 M by using the extended Debye-Hückel equation at 25 °C, where the ion size is 600 pm. YN+ %3D
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