An aluminum [E = 8600 ksi] bar is bonded to a steel [E = 30150 ksi] bar to form a composite beam as shown. Find the distance to the centroid of the transformed section from the bottom surface of the beam. Steel Aluminum. 1.50 in. O 0.639 in. 0.875 in. O 0.469 in. O 0.603 in. O 0.523 in. 0.50 in. 0.50 in.
An aluminum [E = 8600 ksi] bar is bonded to a steel [E = 30150 ksi] bar to form a composite beam as shown. Find the distance to the centroid of the transformed section from the bottom surface of the beam. Steel Aluminum. 1.50 in. O 0.639 in. 0.875 in. O 0.469 in. O 0.603 in. O 0.523 in. 0.50 in. 0.50 in.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![An aluminum [E = 8600 ksi] bar is bonded to a steel [E = 30150 ksi] bar to form a composite beam as shown. Find the distance to the
centroid of the transformed section from the bottom surface of the beam.
Steel
Aluminum.
O 0.639 in.
0.875 in.
O 0.469 in.
O 0.603 in.
O 0.523 in.
1.50 in.
0.50 in.
0.50 in.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3c78b2fd-901b-4b86-b67b-7e99cbbee984%2Fbabab793-8ae9-41f0-b606-22a84f2c6d92%2Fd0u6ko_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An aluminum [E = 8600 ksi] bar is bonded to a steel [E = 30150 ksi] bar to form a composite beam as shown. Find the distance to the
centroid of the transformed section from the bottom surface of the beam.
Steel
Aluminum.
O 0.639 in.
0.875 in.
O 0.469 in.
O 0.603 in.
O 0.523 in.
1.50 in.
0.50 in.
0.50 in.
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