One of the Hume-Rothery rules for solid solutions11 is that the solubility of solute B in solvent A becomes negligible when the atomic radii of A and B differ by more than 15%. Plot the maximum solubility (atomic percent) of Ni, Pt, Au, Al, Ag, and Pb as a function of the ratio of solute and solvent (Cu) radii, and verify that the solid solubility in Cu drops precipitously at a size ratio of about 1.15. Use the following data: rNi = 0.1246 nm rAl = 0.143 nm rAg = 0.1444 nm rPt = 0.139 nm rPb = 0.1750 nm rCu = 0.1278 nm rAu = 0.1441 nm

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10.7 One of the Hume-Rothery rules for solid solutions11 is that the solubility
of solute B in solvent A becomes negligible when the atomic radii of A and
B differ by more than 15%. Plot the maximum solubility (atomic percent) of Ni, Pt, Au, Al, Ag, and Pb as a function of the ratio of solute and solvent (Cu) radii, and verify that the solid solubility in Cu drops precipitously at a size ratio of about 1.15. Use the following data:
rNi = 0.1246 nm rAl = 0.143 nm
rAg = 0.1444 nm
rPt = 0.139 nm rPb = 0.1750 nm
rCu = 0.1278 nm rAu = 0.1441 nm

10.7 One of the Hume-Rothery rules for solid solutions" is that the solubility
of solute B in solvent A becomes negligible when the atomic radii of A and
B differ by more than 15%. Plot the maximum solubility (atomic percent) of
11 W. Hume-Rothery and G. V. Raynor, The Structure of Metals and Alloys (London: Institute
of Metals, 1956), p. 97.
SOLID SOLUTION, PRECIPITATION, AND DISPERSION STRENGTHENING
Ni, Pt, Au, Al, Ag, and Pb as a function of the ratio of solute and solvent (Cu)
radii, and verify that the solid solubility in Cu drops precipitously at a size
ratio of about 1.15. Use the following data:
INi = 0.1246 nm rẠI = 0.143 nm
TAg
0.1444 nm
0.139 nm
rpb = 0.1750 nm
rCu = 0.1278 nm
PAu =
0.1441 nm|
Transcribed Image Text:10.7 One of the Hume-Rothery rules for solid solutions" is that the solubility of solute B in solvent A becomes negligible when the atomic radii of A and B differ by more than 15%. Plot the maximum solubility (atomic percent) of 11 W. Hume-Rothery and G. V. Raynor, The Structure of Metals and Alloys (London: Institute of Metals, 1956), p. 97. SOLID SOLUTION, PRECIPITATION, AND DISPERSION STRENGTHENING Ni, Pt, Au, Al, Ag, and Pb as a function of the ratio of solute and solvent (Cu) radii, and verify that the solid solubility in Cu drops precipitously at a size ratio of about 1.15. Use the following data: INi = 0.1246 nm rẠI = 0.143 nm TAg 0.1444 nm 0.139 nm rpb = 0.1750 nm rCu = 0.1278 nm PAu = 0.1441 nm|
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