A prismatic bar at 50 °F is embedded in a rigid concrete wall. The bar is 50 n. long and has a cross-sectional area of 6 in2 . What is the axial force developed if the temperature is increased to 100 °F? The thermal expansion coefficient of the steel bar is 5 x 10-6 F.
A prismatic bar at 50 °F is embedded in a rigid concrete wall. The bar is 50 n. long and has a cross-sectional area of 6 in2 . What is the axial force developed if the temperature is increased to 100 °F? The thermal expansion coefficient of the steel bar is 5 x 10-6 F.
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A prismatic bar at ?? ℉ is embedded in a rigid concrete wall. The bar is 50 ?. long and has a cross-sectional area of 6 ??? . What is the axial force developed if the temperature is increased to ??? ℉? The thermal expansion coefficient of the steel bar is ? × ??−?⁄℉.
![A prismatic bar at 50 °F is embedded in a rigid concrete wall. The bar is 50 n. long and
has a cross-sectional area of 6 in2 . What is the axial force developed if the temperature
is increased to 100 °F? The thermal expansion coefficient of the steel bar is 5 x
10-6/ F.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F73fd3285-fe2c-416e-8b50-6915e943c725%2Fbe2c2b2b-c006-483c-b1ed-96e80ccb8c8b%2Fmv1buw_processed.png&w=3840&q=75)
Transcribed Image Text:A prismatic bar at 50 °F is embedded in a rigid concrete wall. The bar is 50 n. long and
has a cross-sectional area of 6 in2 . What is the axial force developed if the temperature
is increased to 100 °F? The thermal expansion coefficient of the steel bar is 5 x
10-6/ F.
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