9.36 Consider the hypothetical eutectic phase diagram for metals A and B, which is similar to that for the lead-tin system (Figure 9.8). Assume that (1) a and ß phases exist at the A and B extremes of the phase diagram, respectively; (2) the eutectic composition is 47 wt% B-53 wt% A; and (3) the composition of the ß phase at the eutectic temperature is 92.6 wt% B-7.4 wt% A. Determine the composition of an alloy that will yield primary a and total a mass fractions of 0.356 and 0.693, respectively.

Elements Of Electromagnetics
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**Problem 9.36**

Consider the hypothetical eutectic phase diagram for metals A and B, which is similar to that for the lead-tin system (Figure 9.8). Assume that (1) α and β phases exist at the A and B extremes of the phase diagram, respectively; (2) the eutectic composition is 47 wt% B-53 wt% A; and (3) the composition of the β phase at the eutectic temperature is 92.6 wt% B-7.4 wt% A. Determine the composition of an alloy that will yield primary α and total α mass fractions of 0.356 and 0.693, respectively.
Transcribed Image Text:**Problem 9.36** Consider the hypothetical eutectic phase diagram for metals A and B, which is similar to that for the lead-tin system (Figure 9.8). Assume that (1) α and β phases exist at the A and B extremes of the phase diagram, respectively; (2) the eutectic composition is 47 wt% B-53 wt% A; and (3) the composition of the β phase at the eutectic temperature is 92.6 wt% B-7.4 wt% A. Determine the composition of an alloy that will yield primary α and total α mass fractions of 0.356 and 0.693, respectively.
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