double tee cross section is used for the beam shown below.  Assume the following lengths and loads:   a = 15 ft b = 8 ft c = 13 ft P = 22000 lb Q = 7000 lb   The moment of inertia of the cross section is Iz = 110 in.4.  Dete

Structural Analysis
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Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A double tee cross section is used for the beam shown below.  Assume the following lengths and loads:

 

a = 15 ft

b = 8 ft

c = 13 ft

P = 22000 lb

Q = 7000 lb

 

The moment of inertia of the cross section is Iz = 110 in.4.  Determine the magnitude (i.e., the absolute value) of the maximum tensile bending stress in the beam.

A
double tee cross section is used for the beam shown below. Assume the following lengths and loads:
a = 15 ft
b
= 8 ft
c = 13 ft
P = 22000 lb
Q = 7000 lb
The moment of inertia of the cross section is l₂ = 110 in.4. Determine the magnitude (i.e., the absolute value) of the maximum tensile
bending stress in the beam.
Answer:
a
Omax (Tension) = i
P
B
b
C
psi
С
TE
3.2 in.
5.8 in.
Transcribed Image Text:A double tee cross section is used for the beam shown below. Assume the following lengths and loads: a = 15 ft b = 8 ft c = 13 ft P = 22000 lb Q = 7000 lb The moment of inertia of the cross section is l₂ = 110 in.4. Determine the magnitude (i.e., the absolute value) of the maximum tensile bending stress in the beam. Answer: a Omax (Tension) = i P B b C psi С TE 3.2 in. 5.8 in.
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