The cross section of the beam shown in the figure was created by hammering 16x4 [cm.cm] and 24x4 [cm.cm] planks with nails as shown in the figure. (σem = 10 MPa; τem = 1 MPa) Which of the following moments of inertia should be used to calculate the largest distributed load q that the beam can carry?

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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The cross section of the beam shown in the figure was created by hammering 16x4 [cm.cm] and 24x4 [cm.cm] planks with nails as shown in the figure. (σem = 10 MPa; τem = 1 MPa)

Which of the following moments of inertia should be used to calculate the largest distributed load q that the beam can carry?

q.L
q.L
L
L=1.0 m
4ent
Ibcm
1bcm
4im
4cm
A
84712 cm^4
33333 cm^4
22184 cm^4
D
32212 cm^4
E
O 11266 cm^4
Transcribed Image Text:q.L q.L L L=1.0 m 4ent Ibcm 1bcm 4im 4cm A 84712 cm^4 33333 cm^4 22184 cm^4 D 32212 cm^4 E O 11266 cm^4
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