A flanged wooden shape is used to support the loads shown on the beam. The dimensions of the shape are shown in the seco

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A flanged wooden shape is used to support the loads shown on the beam. The dimensions of the shape are shown in the seco

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A Flanged Wooden Shape Is Used To Support The Loads Shown On The Beam The Dimensions Of The Shape Are Shown In The Seco 1
A Flanged Wooden Shape Is Used To Support The Loads Shown On The Beam The Dimensions Of The Shape Are Shown In The Seco 1 (35.05 KiB) Viewed 60 times
A Flanged Wooden Shape Is Used To Support The Loads Shown On The Beam The Dimensions Of The Shape Are Shown In The Seco 2
A Flanged Wooden Shape Is Used To Support The Loads Shown On The Beam The Dimensions Of The Shape Are Shown In The Seco 2 (47.87 KiB) Viewed 60 times
A flanged wooden shape is used to support the loads shown on the beam. The dimensions of the shape are shown in the second figure Assume Las - Bft, loc=4ft, L.co=4ft. Loe 5 ft. Pc=1680 lb. Pe 232016, WA - 830 lb/ft, b: - 9 in, bz2 in., by- 6 in.d.-2in.cz - 11 in..dy - 2 in. Consider the entire 21-ft length of the beam and determine: (a) the maximum tension bending stress or at any location along the beam, and (b) the maximum compression bending stress oc at any location along the beam. Pc B E с LCD LAB LBC LDE b di I di
Answers: (a) ση psi. (b) o, psi.
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