PROBLEM NO. 4. A uniformly distributed load, W1, is appli all throughout the length of the beam anda concentrat load P1 is located at the midspan of the beam. The maximı flexural stress of the wood used in the design of the bean 20 MPa. Determine the minimum height "h" of the cro section of the beam. WI, kN/m L1=L2, L3, m SET P1, kN b, mm h, mr m A 2.5 10 1.50 3 105 В 2.75 15 1.0 2.0 120 C 2.90 12 1.25 2.5 110 L1 L2 L3

Steel Design (Activate Learning with these NEW titles from Engineering!)
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Author:Segui, William T.
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Chapter9: Composite Construction
Section: Chapter Questions
Problem 9.1.3P
Question
Solve for set B.
PROBLEM NO. 4. A uniformly distributed load, W1, is applied
all throughout the length of the beam and a concentrated
load P1 is located at the midspan of the beam. The maximum
flexural stress of the wood used in the design of the beam is
20 MPa. Determine the minimum height "h" of the cross-
section of the beam.
WI,
kN/m
2.5
SET
P1, kN L1=L2, L3, m
b, mm
|h, mm
105
120
A
10
1.50
3
В
2.75
15
1.0
2.0
C
2.90
12
1.25
2.5
110
L1
L2
L3
Transcribed Image Text:PROBLEM NO. 4. A uniformly distributed load, W1, is applied all throughout the length of the beam and a concentrated load P1 is located at the midspan of the beam. The maximum flexural stress of the wood used in the design of the beam is 20 MPa. Determine the minimum height "h" of the cross- section of the beam. WI, kN/m 2.5 SET P1, kN L1=L2, L3, m b, mm |h, mm 105 120 A 10 1.50 3 В 2.75 15 1.0 2.0 C 2.90 12 1.25 2.5 110 L1 L2 L3
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