A gap of 0.02 in. exists between the composite rod and the wall when the temperature is 75°F. 0.02 in. 14 in. 18 in. – Bronze A = 2.4 in² E = 15 × 10º psi a = 12 x 10-6/°F Aluminum A = 2.8 in? E = 10.6 × 10° psi a = 12.9 x 10-/°F Determine the temperature at which the normal stress in the aluminum rod will be equal to -10 ksi. The temperature of the aluminum rod is | 1°F.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A gap of 0.02 in. exists between the composite rod and the wall when the temperature is 75°F.
0.02 in.
-14 in.
-18 in.
Aluminum
A = 2.8 in?
E = 10.6 X 106psi
a = 12.9 x 10-6/°F
Bronze
A = 2.4 in?
E = 15 × 10° psi
12 x 10 6/°F
%3D
Determine the temperature at which the normal stress in the aluminum rod will be equal to -10 ksi.
The temperature of the aluminum rod is
1°F.
Transcribed Image Text:A gap of 0.02 in. exists between the composite rod and the wall when the temperature is 75°F. 0.02 in. -14 in. -18 in. Aluminum A = 2.8 in? E = 10.6 X 106psi a = 12.9 x 10-6/°F Bronze A = 2.4 in? E = 15 × 10° psi 12 x 10 6/°F %3D Determine the temperature at which the normal stress in the aluminum rod will be equal to -10 ksi. The temperature of the aluminum rod is 1°F.
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