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Calculate the activity coefficient, γ, of Sn2 when the ionic strength of the solution, μ , is 0.058 M:
Calculate the activity coefficient, Y, of Sn when the ionic strength of the 2+ solution, u, is 0.058 M: (a) by linear interpolation of the data in the table to the rig Number Sn (b) by using the extended Debye-Huckel equation at 25 C, where the ion size is 600 pm. Number Sn Activity Ionic Strength Coefficient (H, M) 2+ Ysn 0.001 0.870 0.005 0.749 0.675 0.01 0.485 0.05 0.405 0.1
Calculate the activity coefficient, γ, of Sn2 when the ionic strength of the solution, μ , is 0.058 M:
Calculate the activity coefficient, Y, of Sn when the ionic strength of the 2+ solution, u, is 0.058 M: (a) by linear interpolation of the data in the table to the rig Number Sn (b) by using the extended Debye-Huckel equation at 25 C, where the ion size is 600 pm. Number Sn Activity Ionic Strength Coefficient (H, M) 2+ Ysn 0.001 0.870 0.005 0.749 0.675 0.01 0.485 0.05 0.405 0.1
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Jarrod RobelLv2
13 Sep 2019
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