T(C) 3 TEC) T-370°C 327 C 231 °C T =220°C 183 T. - 183°C Ti -80°C 100 97.Sn 4 789 1 2 3 4 5 6 7 8 9 Sn % 3 16 18.3 47 61.9 91.5 97.8 98 99 Let us consider a 30 wt% Sn-70 wt% Pb alloy at 220 C. Calculate the relative amount of each phase present in terms of mass fraction! lead-rich solid solution: 0.668, liquid: 0.332 lead-rich solid solution: 0.739, liquid: 0.261 O lead-rich solid solution: 0.548, liquid: 0.452 lead-rich solid solution: 0.4, liquid: 0.6

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Material science and testing
T(C)
3
TEC)
T-370°C
327 C
231 °C
T =220°C
T. - 183°C
183
T- 80°C
6.9
100
97.
4
789
1 2 3 4 5 6
7 8
9
Sn % 3
16 18.3 47
61.9 91.5 97.8 98
99
Let us consider a 30 wt% Sn-70 wt% Pb alloy at 220 C. Calculate the relative amount of each
phase present in terms of mass fraction!
lead-rich solid solution: 0.668, liquid: 0.332
lead-rich solid solution: 0.739, liquid: 0.261
O lead-rich solid solution: 0.548, liquid: 0.452
lead-rich solid solution: 0.4, liquid: 0.6
Transcribed Image Text:T(C) 3 TEC) T-370°C 327 C 231 °C T =220°C T. - 183°C 183 T- 80°C 6.9 100 97. 4 789 1 2 3 4 5 6 7 8 9 Sn % 3 16 18.3 47 61.9 91.5 97.8 98 99 Let us consider a 30 wt% Sn-70 wt% Pb alloy at 220 C. Calculate the relative amount of each phase present in terms of mass fraction! lead-rich solid solution: 0.668, liquid: 0.332 lead-rich solid solution: 0.739, liquid: 0.261 O lead-rich solid solution: 0.548, liquid: 0.452 lead-rich solid solution: 0.4, liquid: 0.6
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