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 La = 9 ft. Lac=2 ft. Lop=3 ft. Los = 4 ft. Pc= 2050 lb, P=2330 lb, was 620 lb/ft, b:=8 in, b=2 in, ba=4 in. d₂ = 2 in. d₂ = 9 in, d3=2 in. Consider the entire 18-ft length of the beam and determine: (a) the maximum tension bending stress ay at any location along the beam, and (b) the maximum compression bending stress de at any location along the beam. Answers: (a) OT (b) a = I WAN B Lac C 41 by psi. psi. D dj LDE E

Structural Analysis
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Chapter2: Loads On Structures
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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 second figure.
Assume Lap=9 ft. Lac=2 ft. Lop=3 ft. Loe = 4 ft. Pc= 2050 lb, Pe=2330 lb, was 620 lb/ft, b:=8 in, b=2 in.bg=4 in. d=2in.d₂=9
in, d₂= 2 in. Consider the entire 18-ft length of the beam and determine:
(a) the maximum tension bending stress dy at any location along the beam, and
(b) the maximum compression bending stress og at any location along the beam.
Answers:
(a) OT
(b) a =
1
WAN
LA
B
Lac
C
by
LCD
IH
-by
psi.
psi.
D
d₁
dy
LDE
E
Transcribed Image Text: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 Lap=9 ft. Lac=2 ft. Lop=3 ft. Loe = 4 ft. Pc= 2050 lb, Pe=2330 lb, was 620 lb/ft, b:=8 in, b=2 in.bg=4 in. d=2in.d₂=9 in, d₂= 2 in. Consider the entire 18-ft length of the beam and determine: (a) the maximum tension bending stress dy at any location along the beam, and (b) the maximum compression bending stress og at any location along the beam. Answers: (a) OT (b) a = 1 WAN LA B Lac C by LCD IH -by psi. psi. D d₁ dy LDE E
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