3. The bridge shown consists of two end sections, each weighing 20 tons with center of gravity at G, hinged to a uniform center span weighing 12 tons. Compute the reactions at A, B, E, and F. 6 tons 40m- 20m 40m 30m- -20m-20m- 60m- +20m-20m--30m-
3. The bridge shown consists of two end sections, each weighing 20 tons with center of gravity at G, hinged to a uniform center span weighing 12 tons. Compute the reactions at A, B, E, and F. 6 tons 40m- 20m 40m 30m- -20m-20m- 60m- +20m-20m--30m-
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![3. The bridge shown consists of two end sections, each weighing 20 tons
with center of gravity at G, hinged to a uniform center span weighing 12
tons. Compute the reactions at A, B, E, and F.
6 tons
40m–
-20m
40m
30m20m20m→-
-60m
20m-20m-30m-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffebcd7d6-0c21-4b06-8ad3-3a47bd52c9e0%2Fbfdc66f0-c35f-4ca6-9d34-bda090dbb436%2F0d388vt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. The bridge shown consists of two end sections, each weighing 20 tons
with center of gravity at G, hinged to a uniform center span weighing 12
tons. Compute the reactions at A, B, E, and F.
6 tons
40m–
-20m
40m
30m20m20m→-
-60m
20m-20m-30m-
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