The wood beam supports loads of w = 440 lb/ft and P = 840 lb on span lengths of LAB = 10.4 ft, Lec=5.2 ft, and Lcp-5.2 ft. The beam cross section has dimensions of b₁ = 1.5 in., d₁ = 4.5 in., b₂ = 5.4 in., and d₂ = 11.25 in. Determine the magnitude and location of: (a) the maximum horizontal shear stress in the beam. (b) the maximum tensile bending stress in the beam.

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The wood beam supports loads of w = 440 lb/ft and P = 840 lb on span lengths of LAB = 10.4 ft, LBC = 5.2 ft, and Lcp= 5.2 ft. The beam
cross section has dimensions of b₁ = 1.5 in., d₁ = 4.5 in., b₂ = 5.4 in., and d₂ = 11.25 in. Determine the magnitude and location of:
(a) the maximum horizontal shear stress in the beam.
(b) the maximum tensile bending stress in the beam.
Answer:
pun
(a) Tmax=
(b) gmax
W
LAB
B
psi
psi
LBC
LCD
di
by
b₂
b₁
Attempts: 0 of Lused
dz
Cubroit Assessar
12:59 F
Transcribed Image Text:The wood beam supports loads of w = 440 lb/ft and P = 840 lb on span lengths of LAB = 10.4 ft, LBC = 5.2 ft, and Lcp= 5.2 ft. The beam cross section has dimensions of b₁ = 1.5 in., d₁ = 4.5 in., b₂ = 5.4 in., and d₂ = 11.25 in. Determine the magnitude and location of: (a) the maximum horizontal shear stress in the beam. (b) the maximum tensile bending stress in the beam. Answer: pun (a) Tmax= (b) gmax W LAB B psi psi LBC LCD di by b₂ b₁ Attempts: 0 of Lused dz Cubroit Assessar 12:59 F
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