1. A W30 X 108 simply supported beam spans 32 ft and supports a uniformly distributed load of 4 kips/ft. Assume A992 steel and full lateral support. Determine the maximum allowable bending stress. Be sure to include the beam weight. 2. Calculate the maximum allowable bending stress in a W18 X 65 beam that spans 36 ft and supports three equal concentrated loads of 12 kips each placed at the quarter points (9 ft). Assume A992 steel and full lateral support. Be sure to include the beam weight.
1. A W30 X 108 simply supported beam spans 32 ft and supports a uniformly distributed load of 4 kips/ft. Assume A992 steel and full lateral support. Determine the maximum allowable bending stress. Be sure to include the beam weight. 2. Calculate the maximum allowable bending stress in a W18 X 65 beam that spans 36 ft and supports three equal concentrated loads of 12 kips each placed at the quarter points (9 ft). Assume A992 steel and full lateral support. Be sure to include the beam weight.
Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
ISBN:9781337094740
Author:Segui, William T.
Publisher:Segui, William T.
Chapter5: Beams
Section: Chapter Questions
Problem 5.5.11P
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Transcribed Image Text:1. A W30 X 108 simply supported beam spans 32 ft and supports a uniformly
distributed load of 4 kips/ft. Assume A992 steel and full lateral support.
Determine the maximum allowable bending stress. Be sure to include the
beam weight.
2. Calculate the maximum allowable bending stress in a W18 X 65 beam that
spans 36 ft and supports three equal concentrated loads of 12 kips each
placed at the quarter points (9 ft). Assume A992 steel and full lateral
support. Be sure to include the beam weight.
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