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 LAB = 9 ft, LBC = 3 ft, LCD = 4 ft, LDE = 4 ft, PC = 2150 lb, PE = 2260 lb, wAB = 650 lb/ft, b1 = 11 in., b2 = 2 in., b3 = 7 in., d1 = 2 in., d2 = 5 in., d3 = 2 in. Consider the entire  20-ft length of the beam and determine: (a) the maximum tension bending stress σT at any location along the beam, and (b) the maximum compression bending stress σC at any location along the beam.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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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 LAB = 9 ft, LBC = 3 ft, LCD = 4 ft, LDE = 4 ft, P= 2150 lb, P= 2260 lb, wAB = 650 lb/ft, b= 11 in., b= 2 in., b= 7 in., d= 2 in., d= 5 in., d= 2 in. Consider the entire  20-ft length of the beam and determine:
(a) the maximum tension bending stress σT at any location along the beam, and
(b) the maximum compression bending stress σC at any location along the beam.

PE
PC
WAB
D
E
B
LBC
LCD
LDE
LAB
b1
di
d2
b2
dz
b3
Transcribed Image Text:PE PC WAB D E B LBC LCD LDE LAB b1 di d2 b2 dz b3
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