Beam cross section is shown in Figure Q3 and given the second moment of area is I= 20.85 x 106 mm*. If a resultant shear force, Vacting at the beam cross section is 40 kN, (a) Determine the shear stress at point M, N, O and P based on the given shear force. (b) Sketch the shear stress distribution over the cross section and label the shear stress values V= 40 kN M 80 mm 40 mm ỹ =100 mm 80 mm 80 mm 30 mm 80 mm Figure Q3

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter6: Stresses In Beams (advanced Topics)
Section: Chapter Questions
Problem 6.9.9P: A U-shaped cross section of constant thickness is shown in the figure. Derive the following formula...
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Beam cross section is shown in Figure Q3 and given the second moment of area is I= 20.85
x 106 mm*. If a resultant shear force, Vacting at the beam cross section is 40 kN,
(a) Determine the shear stress at point M, N, O and P based on the given shear force.
(b) Sketch the shear stress distribution over the cross section and label the shear stress values
V= 40 kN
M
80 mm
40 mm
y =100 mm
80 mm
80 mm
30 mm
80 mm
Figure Q3
Transcribed Image Text:Beam cross section is shown in Figure Q3 and given the second moment of area is I= 20.85 x 106 mm*. If a resultant shear force, Vacting at the beam cross section is 40 kN, (a) Determine the shear stress at point M, N, O and P based on the given shear force. (b) Sketch the shear stress distribution over the cross section and label the shear stress values V= 40 kN M 80 mm 40 mm y =100 mm 80 mm 80 mm 30 mm 80 mm Figure Q3
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