Calculate the net potential energy for a Hg4 and S2 ion pair, given that n= 10.5 and b= 1.7762 x 10 119 N.m10. The ionic radius of the Hg2* ion is 0.110 nm, and the ionic radius of the S2 ion is 0.174 nm. Assume the charge on one electron to be 1.60 x 10-19 C, the permittivity of free space to be 8.85 x 10-12 c2/(Nm2). The net potential energy between the Hg2* ion and the S2- ion is - 3.36 x 10-18 J.
Calculate the net potential energy for a Hg4 and S2 ion pair, given that n= 10.5 and b= 1.7762 x 10 119 N.m10. The ionic radius of the Hg2* ion is 0.110 nm, and the ionic radius of the S2 ion is 0.174 nm. Assume the charge on one electron to be 1.60 x 10-19 C, the permittivity of free space to be 8.85 x 10-12 c2/(Nm2). The net potential energy between the Hg2* ion and the S2- ion is - 3.36 x 10-18 J.
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
Transcribed Image Text:Calculate the net potential energy for a Hg2+ and S2- ion pair, given that n= 10.5 and b= 1.7762 x 10 119 N.m10. The ionic radius of
the Hg2+ ion is 0.110 nm, and the ionic radius of the S2- ion is 0.174 nm. Assume the charge on one electron to be 1.60 × 10 19
C, the
permittivity of free space to be 8.85 x 10-12 c2/(Nm2).
The net potential energy between the Hg+ ion and the S2- ion is -
-18
3.36 x 10
J.
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